t France, the UK and Europe: New Partnerships and Common Challenges By feedproxy.google.com Published On :: Fri, 28 Feb 2020 00:00:00 +0000 Full Article
t Undercurrents: Episode 47 - Pakistan's Blasphemy Laws By feedproxy.google.com Published On :: Thu, 05 Mar 2020 00:00:00 +0000 Full Article
t Security Challenges in the Mediterranean Region By feedproxy.google.com Published On :: Thu, 05 Mar 2020 00:00:00 +0000 Full Article
t Undercurrents: Episode 48 - UK Intelligence Agencies, and Paying for Climate Action By feedproxy.google.com Published On :: Fri, 20 Mar 2020 00:00:00 +0000 Full Article
t The Climate Briefing: Episode 2 - European Climate Ambitions By feedproxy.google.com Published On :: Fri, 03 Apr 2020 00:00:00 +0100 Full Article
t Undercurrents: Episode 49 - EU Responses to COVID-19, and the Politics of Celebrity By feedproxy.google.com Published On :: Thu, 16 Apr 2020 00:00:00 +0100 Full Article
t Undercurrents: Episode 50 - The Coronavirus Communications Crisis, and Justice in Myanmar By feedproxy.google.com Published On :: Thu, 23 Apr 2020 00:00:00 +0100 Full Article
t The Climate Briefing: Episode 3 - Climate Change and National Security By feedproxy.google.com Published On :: Wed, 29 Apr 2020 00:00:00 +0100 Full Article
t Undercurrents: Episode 51 - Preparing for Pandemics, and Gandhi's Chatham House Speech By feedproxy.google.com Published On :: Thu, 30 Apr 2020 00:00:00 +0100 Full Article
t Undercurrents: Episode 52 - Defining Pandemics, and Mikheil Saakashvili's Ukrainian Comeback By feedproxy.google.com Published On :: Thu, 07 May 2020 00:00:00 +0100 Full Article
t Correction: Diversity in the Protein N-Glycosylation Pathways Within the Campylobacter Genus. [Additions and Corrections] By feedproxy.google.com Published On :: 2020-05-01T00:05:26-07:00 Full Article
t Proteomic Analysis of Salmonella-modified Membranes Reveals Adaptations to Macrophage Hosts [Research] By feedproxy.google.com Published On :: 2020-05-01T00:05:26-07:00 Systemic infection and proliferation of intracellular pathogens require the biogenesis of a growth-stimulating compartment. The gastrointestinal pathogen Salmonella enterica commonly forms highly dynamic and extensive tubular membrane compartments built from Salmonella-modified membranes (SMMs) in diverse host cells. Although the general mechanism involved in the formation of replication-permissive compartments of S. enterica is well researched, much less is known regarding specific adaptations to different host cell types. Using an affinity-based proteome approach, we explored the composition of SMMs in murine macrophages. The systematic characterization provides a broader landscape of host players to the maturation of Salmonella-containing compartments and reveals core host elements targeted by Salmonella in macrophages as well as epithelial cells. However, we also identified subtle host specific adaptations. Some of these observations, such as the differential involvement of the COPII system, Rab GTPases 2A, 8B, 11 and ER transport proteins Sec61 and Sec22B may explain cell line-dependent variations in the pathophysiology of Salmonella infections. In summary, our system-wide approach demonstrates a hitherto underappreciated impact of the host cell type in the formation of intracellular compartments by Salmonella. Full Article
t Phosphotyrosine-based Phosphoproteomics for Target Identification and Drug Response Prediction in AML Cell Lines [Research] By feedproxy.google.com Published On :: 2020-05-01T00:05:26-07:00 Acute myeloid leukemia (AML) is a clonal disorder arising from hematopoietic myeloid progenitors. Aberrantly activated tyrosine kinases (TK) are involved in leukemogenesis and are associated with poor treatment outcome. Kinase inhibitor (KI) treatment has shown promise in improving patient outcome in AML. However, inhibitor selection for patients is suboptimal. In a preclinical effort to address KI selection, we analyzed a panel of 16 AML cell lines using phosphotyrosine (pY) enrichment-based, label-free phosphoproteomics. The Integrative Inferred Kinase Activity (INKA) algorithm was used to identify hyperphosphorylated, active kinases as candidates for KI treatment, and efficacy of selected KIs was tested. Heterogeneous signaling was observed with between 241 and 2764 phosphopeptides detected per cell line. Of 4853 identified phosphopeptides with 4229 phosphosites, 4459 phosphopeptides (4430 pY) were linked to 3605 class I sites (3525 pY). INKA analysis in single cell lines successfully pinpointed driver kinases (PDGFRA, JAK2, KIT and FLT3) corresponding with activating mutations present in these cell lines. Furthermore, potential receptor tyrosine kinase (RTK) drivers, undetected by standard molecular analyses, were identified in four cell lines (FGFR1 in KG-1 and KG-1a, PDGFRA in Kasumi-3, and FLT3 in MM6). These cell lines proved highly sensitive to specific KIs. Six AML cell lines without a clear RTK driver showed evidence of MAPK1/3 activation, indicative of the presence of activating upstream RAS mutations. Importantly, FLT3 phosphorylation was demonstrated in two clinical AML samples with a FLT3 internal tandem duplication (ITD) mutation. Our data show the potential of pY-phosphoproteomics and INKA analysis to provide insight in AML TK signaling and identify hyperactive kinases as potential targets for treatment in AML cell lines. These results warrant future investigation of clinical samples to further our understanding of TK phosphorylation in relation to clinical response in the individual patient. Full Article
t Identification of an Unconventional Subpeptidome Bound to the Behcet's Disease-associated HLA-B*51:01 that is Regulated by Endoplasmic Reticulum Aminopeptidase 1 (ERAP1) [Research] By feedproxy.google.com Published On :: 2020-05-01T00:05:26-07:00 Human leukocyte antigen (HLA) B*51:01 and endoplasmic reticulum aminopeptidase 1 (ERAP1) are strongly genetically associated with Behcet's disease (BD). Previous studies have defined two subgroups of HLA-B*51 peptidome containing proline (Pro) or alanine (Ala) at position 2 (P2). Little is known about the unconventional non-Pro/Ala2 HLA-B*51-bound peptides. We aimed to study the features of this novel subpeptidome, and investigate its regulation by ERAP1. CRISPR-Cas9 was used to generate an HLA-ABC-triple knockout HeLa cell line (HeLa.ABC-KO), which was subsequently transduced to express HLA-B*51:01 (HeLa.ABC-KO.B51). ERAP1 was silenced using lentiviral shRNA. Peptides bound to HLA-B*51:01 were eluted and analyzed by mass spectrometry. The characteristics of non-Pro/Ala2, Pro2, and Ala2 peptides and their alteration by ERAP1 silencing were investigated. Effects of ERAP1 silencing on cell surface expression of HLA-B*51:01 were studied using flow cytometry. More than 20% of peptides eluted from HLA-B*51:01 lacked Pro or Ala at P2. This unconventional group of HLA-B*51:01-bound peptides was relatively enriched for 8-mers (with relatively fewer 9-mers) compared with the Pro2 and Ala2 subpeptidomes and had similar N-terminal and C-terminal residue usages to Ala2 peptides (with the exception of the less abundant leucine at position ). Knockdown of ERAP1 increased the percentage of non-Pro/Ala2 from 20% to ~40%, increased the percentage of longer (10-mer and 11-mer) peptides eluted from HLA-B*51:01 complexes, and abrogated the predominance of leucine at P1. Interestingly knockdown of ERAP1 altered the length and N-terminal residue usage of non-Ala2&Pro2 and Ala2 but not the Pro2 peptides. Finally, ERAP1 silencing regulated the expression levels of cell surface HLA-B*51 in a cell-type-dependent manner. In conclusion, we have used a novel methodology to identify an unconventional but surprisingly abundant non-Pro/Ala2 HLA-B*51:01 subpeptidome. It is increased by knockdown of ERAP1, a gene affecting the risk of developing BD. This has implications for theories of disease pathogenesis. Full Article
t Discovery of a Redox Thiol Switch: Implications for Cellular Energy Metabolism [Research] By feedproxy.google.com Published On :: 2020-05-01T00:05:26-07:00 The redox-based modifications of cysteine residues in proteins regulate their function in many biological processes. The gas molecule H2S has been shown to persulfidate redox sensitive cysteine residues resulting in an H2S-modified proteome known as the sulfhydrome. Tandem Mass Tags (TMT) multiplexing strategies for large-scale proteomic analyses have become increasingly prevalent in detecting cysteine modifications. Here we developed a TMT-based proteomics approach for selectively trapping and tagging cysteine persulfides in the cellular proteomes. We revealed the natural protein sulfhydrome of two human cell lines, and identified insulin as a novel substrate in pancreatic beta cells. Moreover, we showed that under oxidative stress conditions, increased H2S can target enzymes involved in energy metabolism by switching specific cysteine modifications to persulfides. Specifically, we discovered a Redox Thiol Switch, from protein S-glutathioinylation to S-persulfidation (RTSGS). We propose that the RTSGS from S-glutathioinylation to S-persulfidation is a potential mechanism to fine tune cellular energy metabolism in response to different levels of oxidative stress. Full Article
t Quantitative Profiling of the Human Substantia Nigra Proteome from Laser-capture Microdissected FFPE Tissue [Research] By feedproxy.google.com Published On :: 2020-05-01T00:05:26-07:00 Laser-capture microdissection (LCM) allows the visualization and isolation of morphologically distinct subpopulations of cells from heterogeneous tissue specimens. In combination with formalin-fixed and paraffin-embedded (FFPE) tissue it provides a powerful tool for retrospective and clinically relevant studies of tissue proteins in a healthy and diseased context. We first optimized the protocol for efficient LCM analysis of FFPE tissue specimens. The use of SDS containing extraction buffer in combination with the single-pot solid-phase-enhanced sample preparation (SP3) digest method gave the best results regarding protein yield and protein/peptide identifications. Microdissected FFPE human substantia nigra tissue samples (~3,000 cells) were then analyzed, using tandem mass tag (TMT) labeling and LC-MS/MS, resulting in the quantification of >5,600 protein groups. Nigral proteins were classified and analyzed by abundance, showing an enrichment of extracellular exosome and neuron-specific gene ontology (GO) terms among the higher abundance proteins. Comparison of microdissected samples with intact tissue sections, using a label-free shotgun approach, revealed an enrichment of neuronal cell type markers, such as tyrosine hydroxylase and alpha-synuclein, as well as proteins annotated with neuron-specific GO terms. Overall, this study provides a detailed protocol for laser-capture proteomics using FFPE tissue and demonstrates the efficiency of LCM analysis of distinct cell subpopulations for proteomic analysis using low sample amounts. Full Article
t An Improved Boosting to Amplify Signal with Isobaric Labeling (iBASIL) Strategy for Precise Quantitative Single-cell Proteomics [Research] By feedproxy.google.com Published On :: 2020-05-01T00:05:26-07:00 Mass spectrometry (MS)-based proteomics has great potential for overcoming the limitations of antibody-based immunoassays for antibody-independent, comprehensive, and quantitative proteomic analysis of single cells. Indeed, recent advances in nanoscale sample preparation have enabled effective processing of single cells. In particular, the concept of using boosting/carrier channels in isobaric labeling to increase the sensitivity in MS detection has also been increasingly used for quantitative proteomic analysis of small-sized samples including single cells. However, the full potential of such boosting/carrier approaches has not been significantly explored, nor has the resulting quantitation quality been carefully evaluated. Herein, we have further evaluated and optimized our recent boosting to amplify signal with isobaric labeling (BASIL) approach, originally developed for quantifying phosphorylation in small number of cells, for highly effective analysis of proteins in single cells. This improved BASIL (iBASIL) approach enables reliable quantitative single-cell proteomics analysis with greater proteome coverage by carefully controlling the boosting-to-sample ratio (e.g. in general <100x) and optimizing MS automatic gain control (AGC) and ion injection time settings in MS/MS analysis (e.g. 5E5 and 300 ms, respectively, which is significantly higher than that used in typical bulk analysis). By coupling with a nanodroplet-based single cell preparation (nanoPOTS) platform, iBASIL enabled identification of ~2500 proteins and precise quantification of ~1500 proteins in the analysis of 104 FACS-isolated single cells, with the resulting protein profiles robustly clustering the cells from three different acute myeloid leukemia cell lines. This study highlights the importance of carefully evaluating and optimizing the boosting ratios and MS data acquisition conditions for achieving robust, comprehensive proteomic analysis of single cells. Full Article
t Human Hepatocyte Nuclear Factor 4-{alpha} Encodes Isoforms with Distinct Transcriptional Functions [Research] By feedproxy.google.com Published On :: 2020-05-01T00:05:26-07:00 HNF4α is a nuclear receptor produced as 12 isoforms from two promoters by alternative splicing. To characterize the transcriptional capacities of all 12 HNF4α isoforms, stable lines expressing each isoform were generated. The entire transcriptome associated with each isoform was analyzed as well as their respective interacting proteome. Major differences were noted in the transcriptional function of these isoforms. The α1 and α2 isoforms were the strongest regulators of gene expression whereas the α3 isoform exhibited significantly reduced activity. The α4, α5, and α6 isoforms, which use an alternative first exon, were characterized for the first time, and showed a greatly reduced transcriptional potential with an inability to recognize the consensus response element of HNF4α. Several transcription factors and coregulators were identified as potential specific partners for certain HNF4α isoforms. An analysis integrating the vast amount of omics data enabled the identification of transcriptional regulatory mechanisms specific to certain HNF4α isoforms, hence demonstrating the importance of considering all isoforms given their seemingly diverse functions. Full Article
t The Secretome Profiling of a Pediatric Airway Epithelium Infected with hRSV Identified Aberrant Apical/Basolateral Trafficking and Novel Immune Modulating (CXCL6, CXCL16, CSF3) and Antiviral (CEACAM1) Proteins [Research] By feedproxy.google.com Published On :: 2020-05-01T00:05:26-07:00 The respiratory epithelium comprises polarized cells at the interface between the environment and airway tissues. Polarized apical and basolateral protein secretions are a feature of airway epithelium homeostasis. Human respiratory syncytial virus (hRSV) is a major human pathogen that primarily targets the respiratory epithelium. However, the consequences of hRSV infection on epithelium secretome polarity and content remain poorly understood. To investigate the hRSV-associated apical and basolateral secretomes, a proteomics approach was combined with an ex vivo pediatric human airway epithelial (HAE) model of hRSV infection (data are available via ProteomeXchange and can be accessed at https://www.ebi.ac.uk/pride/ with identifier PXD013661). Following infection, a skewing of apical/basolateral abundance ratios was identified for several individual proteins. Novel modulators of neutrophil and lymphocyte activation (CXCL6, CSF3, SECTM1 or CXCL16), and antiviral proteins (BST2 or CEACAM1) were detected in infected, but not in uninfected cultures. Importantly, CXCL6, CXCL16, CSF3 were also detected in nasopharyngeal aspirates (NPA) from hRSV-infected infants but not healthy controls. Furthermore, the antiviral activity of CEACAM1 against RSV was confirmed in vitro using BEAS-2B cells. hRSV infection disrupted the polarity of the pediatric respiratory epithelial secretome and was associated with immune modulating proteins (CXCL6, CXCL16, CSF3) never linked with this virus before. In addition, the antiviral activity of CEACAM1 against hRSV had also never been previously characterized. This study, therefore, provides novel insights into RSV pathogenesis and endogenous antiviral responses in pediatric airway epithelium. Full Article
t Decreased Immunoglobulin G Core Fucosylation, A Player in Antibody-dependent Cell-mediated Cytotoxicity, is Associated with Autoimmune Thyroid Diseases [Research] By feedproxy.google.com Published On :: 2020-05-01T00:05:26-07:00 Autoimmune thyroid diseases (AITD) are the most common group of autoimmune diseases, associated with lymphocyte infiltration and the production of thyroid autoantibodies, like thyroid peroxidase antibodies (TPOAb), in the thyroid gland. Immunoglobulins and cell-surface receptors are glycoproteins with distinctive glycosylation patterns that play a structural role in maintaining and modulating their functions. We investigated associations of total circulating IgG and peripheral blood mononuclear cells glycosylation with AITD and the influence of genetic background in a case-control study with several independent cohorts and over 3,000 individuals in total. The study revealed an inverse association of IgG core fucosylation with TPOAb and AITD, as well as decreased peripheral blood mononuclear cells antennary α1,2 fucosylation in AITD, but no shared genetic variance between AITD and glycosylation. These data suggest that the decreased level of IgG core fucosylation is a risk factor for AITD that promotes antibody-dependent cell-mediated cytotoxicity previously associated with TPOAb levels. Full Article
t Proximity Dependent Biotinylation: Key Enzymes and Adaptation to Proteomics Approaches [Reviews] By feedproxy.google.com Published On :: 2020-05-01T00:05:26-07:00 The study of protein subcellular distribution, their assembly into complexes and the set of proteins with which they interact with is essential to our understanding of fundamental biological processes. Complementary to traditional assays, proximity-dependent biotinylation (PDB) approaches coupled with mass spectrometry (such as BioID or APEX) have emerged as powerful techniques to study proximal protein interactions and the subcellular proteome in the context of living cells and organisms. Since their introduction in 2012, PDB approaches have been used in an increasing number of studies and the enzymes themselves have been subjected to intensive optimization. How these enzymes have been optimized and considerations for their use in proteomics experiments are important questions. Here, we review the structural diversity and mechanisms of the two main classes of PDB enzymes: the biotin protein ligases (BioID) and the peroxidases (APEX). We describe the engineering of these enzymes for PDB and review emerging applications, including the development of PDB for coincidence detection (split-PDB). Lastly, we briefly review enzyme selection and experimental design guidelines and reflect on the labeling chemistries and their implication for data interpretation. Full Article
t Profiling Cell Signaling Networks at Single-cell Resolution [Reviews] By feedproxy.google.com Published On :: 2020-05-01T00:05:26-07:00 Signaling networks process intra- and extracellular information to modulate the functions of a cell. Deregulation of signaling networks results in abnormal cellular physiological states and often drives diseases. Network responses to a stimulus or a drug treatment can be highly heterogeneous across cells in a tissue because of many sources of cellular genetic and non-genetic variance. Signaling network heterogeneity is the key to many biological processes, such as cell differentiation and drug resistance. Only recently, the emergence of multiplexed single-cell measurement technologies has made it possible to evaluate this heterogeneity. In this review, we categorize currently established single-cell signaling network profiling approaches by their methodology, coverage, and application, and we discuss the advantages and limitations of each type of technology. We also describe the available computational tools for network characterization using single-cell data and discuss potential confounding factors that need to be considered in single-cell signaling network analyses. Full Article
t A comprehensive evaluation of a typical plant telomeric G-quadruplex (G4) DNA reveals the dynamics of G4 formation, rearrangement, and unfolding [Plant Biology] By feedproxy.google.com Published On :: 2020-04-17T00:06:05-07:00 Telomeres are specific nucleoprotein structures that are located at the ends of linear eukaryotic chromosomes and play crucial roles in genomic stability. Telomere DNA consists of simple repeats of a short G-rich sequence: TTAGGG in mammals and TTTAGGG in most plants. In recent years, the mammalian telomeric G-rich repeats have been shown to form G-quadruplex (G4) structures, which are crucial for modulating telomere functions. Surprisingly, even though plant telomeres are essential for plant growth, development, and environmental adaptions, only few reports exist on plant telomeric G4 DNA (pTG4). Here, using bulk and single-molecule assays, including CD spectroscopy, and single-molecule FRET approaches, we comprehensively characterized the structure and dynamics of a typical plant telomeric sequence, d[GGG(TTTAGGG)3]. We found that this sequence can fold into mixed G4s in potassium, including parallel and antiparallel structures. We also directly detected intermediate dynamic transitions, including G-hairpin, parallel G-triplex, and antiparallel G-triplex structures. Moreover, we observed that pTG4 is unfolded by the AtRecQ2 helicase but not by AtRecQ3. The results of our work shed light on our understanding about the existence, topological structures, stability, intermediates, unwinding, and functions of pTG4. Full Article
t Structural basis of specific inhibition of extracellular activation of pro- or latent myostatin by the monoclonal antibody SRK-015 [Molecular Biophysics] By feedproxy.google.com Published On :: 2020-04-17T00:06:05-07:00 Myostatin (or growth/differentiation factor 8 (GDF8)) is a member of the transforming growth factor β superfamily of growth factors and negatively regulates skeletal muscle growth. Its dysregulation is implicated in muscle wasting diseases. SRK-015 is a clinical-stage mAb that prevents extracellular proteolytic activation of pro- and latent myostatin. Here we used integrated structural and biochemical approaches to elucidate the molecular mechanism of antibody-mediated neutralization of pro-myostatin activation. The crystal structure of pro-myostatin in complex with 29H4-16 Fab, a high-affinity variant of SRK-015, at 2.79 Å resolution revealed that the antibody binds to a conformational epitope in the arm region of the prodomain distant from the proteolytic cleavage sites. This epitope is highly sequence-divergent, having only limited similarity to other closely related members of the transforming growth factor β superfamily. Hydrogen/deuterium exchange MS experiments indicated that antibody binding induces conformational changes in pro- and latent myostatin that span the arm region, the loops contiguous to the protease cleavage sites, and the latency-associated structural elements. Moreover, negative-stain EM with full-length antibodies disclosed a stable, ring-like antigen–antibody structure in which the two Fab arms of a single antibody occupy the two arm regions of the prodomain in the pro- and latent myostatin homodimers, suggesting a 1:1 (antibody:myostatin homodimer) binding stoichiometry. These results suggest that SRK-015 binding stabilizes the latent conformation and limits the accessibility of protease cleavage sites within the prodomain. These findings shed light on approaches that specifically block the extracellular activation of growth factors by targeting their precursor forms. Full Article
t Biochemical and structural insights into how amino acids regulate pyruvate kinase muscle isoform 2 [Enzymology] By feedproxy.google.com Published On :: 2020-04-17T00:06:05-07:00 Pyruvate kinase muscle isoform 2 (PKM2) is a key glycolytic enzyme involved in ATP generation and critical for cancer metabolism. PKM2 is expressed in many human cancers and is regulated by complex mechanisms that promote tumor growth and proliferation. Therefore, it is considered an attractive therapeutic target for modulating tumor metabolism. Various stimuli allosterically regulate PKM2 by cycling it between highly active and less active states. Several small molecules activate PKM2 by binding to its intersubunit interface. Serine and cysteine serve as an activator and inhibitor of PKM2, respectively, by binding to its amino acid (AA)-binding pocket, which therefore represents a potential druggable site. Despite binding similarly to PKM2, how cysteine and serine differentially regulate this enzyme remains elusive. Using kinetic analyses, fluorescence binding, X-ray crystallography, and gel filtration experiments with asparagine, aspartate, and valine as PKM2 ligands, we examined whether the differences in the side-chain polarity of these AAs trigger distinct allosteric responses in PKM2. We found that Asn (polar) and Asp (charged) activate PKM2 and that Val (hydrophobic) inhibits it. The results also indicate that both Asn and Asp can restore the activity of Val-inhibited PKM2. AA-bound crystal structures of PKM2 displayed distinctive interactions within the binding pocket, causing unique allosteric effects in the enzyme. These structure-function analyses of AA-mediated PKM2 regulation shed light on the chemical requirements in the development of mechanism-based small-molecule modulators targeting the AA-binding pocket of PKM2 and provide broader insights into the regulatory mechanisms of complex allosteric enzymes. Full Article
t X-ray structures of catalytic intermediates of cytochrome c oxidase provide insights into its O2 activation and unidirectional proton-pump mechanisms [Molecular Biophysics] By feedproxy.google.com Published On :: 2020-04-24T06:08:45-07:00 Cytochrome c oxidase (CcO) reduces O2 to water, coupled with a proton-pumping process. The structure of the O2-reduction site of CcO contains two reducing equivalents, Fea32+ and CuB1+, and suggests that a peroxide-bound state (Fea33+–O−–O−–CuB2+) rather than an O2-bound state (Fea32+–O2) is the initial catalytic intermediate. Unexpectedly, however, resonance Raman spectroscopy results have shown that the initial intermediate is Fea32+–O2, whereas Fea33+–O−–O−–CuB2+ is undetectable. Based on X-ray structures of static noncatalytic CcO forms and mutation analyses for bovine CcO, a proton-pumping mechanism has been proposed. It involves a proton-conducting pathway (the H-pathway) comprising a tandem hydrogen-bond network and a water channel located between the N- and P-side surfaces. However, a system for unidirectional proton-transport has not been experimentally identified. Here, an essentially identical X-ray structure for the two catalytic intermediates (P and F) of bovine CcO was determined at 1.8 Å resolution. A 1.70 Å Fe–O distance of the ferryl center could best be described as Fea34+ = O2−, not as Fea34+–OH−. The distance suggests an ∼800-cm−1 Raman stretching band. We found an interstitial water molecule that could trigger a rapid proton-coupled electron transfer from tyrosine-OH to the slowly forming Fea33+–O−–O−–CuB2+ state, preventing its detection, consistent with the unexpected Raman results. The H-pathway structures of both intermediates indicated that during proton-pumping from the hydrogen-bond network to the P-side, a transmembrane helix closes the water channel connecting the N-side with the hydrogen-bond network, facilitating unidirectional proton-pumping during the P-to-F transition. Full Article
t Structural basis of cell-surface signaling by a conserved sigma regulator in Gram-negative bacteria [Molecular Biophysics] By feedproxy.google.com Published On :: 2020-04-24T06:08:45-07:00 Cell-surface signaling (CSS) in Gram-negative bacteria involves highly conserved regulatory pathways that optimize gene expression by transducing extracellular environmental signals to the cytoplasm via inner-membrane sigma regulators. The molecular details of ferric siderophore-mediated activation of the iron import machinery through a sigma regulator are unclear. Here, we present the 1.56 Å resolution structure of the periplasmic complex of the C-terminal CSS domain (CCSSD) of PupR, the sigma regulator in the Pseudomonas capeferrum pseudobactin BN7/8 transport system, and the N-terminal signaling domain (NTSD) of PupB, an outer-membrane TonB-dependent transducer. The structure revealed that the CCSSD consists of two subdomains: a juxta-membrane subdomain, which has a novel all-β-fold, followed by a secretin/TonB, short N-terminal subdomain at the C terminus of the CCSSD, a previously unobserved topological arrangement of this domain. Using affinity pulldown assays, isothermal titration calorimetry, and thermal denaturation CD spectroscopy, we show that both subdomains are required for binding the NTSD with micromolar affinity and that NTSD binding improves CCSSD stability. Our findings prompt us to present a revised model of CSS wherein the CCSSD:NTSD complex forms prior to ferric-siderophore binding. Upon siderophore binding, conformational changes in the CCSSD enable regulated intramembrane proteolysis of the sigma regulator, ultimately resulting in transcriptional regulation. Full Article
t Single-molecule level structural dynamics of DNA unwinding by human mitochondrial Twinkle helicase [Molecular Biophysics] By feedproxy.google.com Published On :: 2020-04-24T06:08:45-07:00 Knowledge of the molecular events in mitochondrial DNA (mtDNA) replication is crucial to understanding the origins of human disorders arising from mitochondrial dysfunction. Twinkle helicase is an essential component of mtDNA replication. Here, we employed atomic force microscopy imaging in air and liquids to visualize ring assembly, DNA binding, and unwinding activity of individual Twinkle hexamers at the single-molecule level. We observed that the Twinkle subunits self-assemble into hexamers and higher-order complexes that can switch between open and closed-ring configurations in the absence of DNA. Our analyses helped visualize Twinkle loading onto and unloading from DNA in an open-ringed configuration. They also revealed that closed-ring conformers bind and unwind several hundred base pairs of duplex DNA at an average rate of ∼240 bp/min. We found that the addition of mitochondrial single-stranded (ss) DNA–binding protein both influences the ways Twinkle loads onto defined DNA substrates and stabilizes the unwound ssDNA product, resulting in a ∼5-fold stimulation of the apparent DNA-unwinding rate. Mitochondrial ssDNA-binding protein also increased the estimated translocation processivity from 1750 to >9000 bp before helicase disassociation, suggesting that more than half of the mitochondrial genome could be unwound by Twinkle during a single DNA-binding event. The strategies used in this work provide a new platform to examine Twinkle disease variants and the core mtDNA replication machinery. They also offer an enhanced framework to investigate molecular mechanisms underlying deletion and depletion of the mitochondrial genome as observed in mitochondrial diseases. Full Article
t Biophysical characterization of SARAH domain-mediated multimerization of Hippo pathway complexes in Drosophila [Signal Transduction] By feedproxy.google.com Published On :: 2020-05-01T00:06:09-07:00 Hippo pathway signaling limits cell growth and proliferation and maintains the stem-cell niche. These cellular events result from the coordinated activity of a core kinase cassette that is regulated, in part, by interactions involving Hippo, Salvador, and dRassF. These interactions are mediated by a conserved coiled-coil domain, termed SARAH, in each of these proteins. SARAH domain–mediated homodimerization of Hippo kinase leads to autophosphorylation and activation. Paradoxically, SARAH domain–mediated heterodimerization between Hippo and Salvador enhances Hippo kinase activity in cells, whereas complex formation with dRassF inhibits it. To better understand the mechanism by which each complex distinctly modulates Hippo kinase and pathway activity, here we biophysically characterized the entire suite of SARAH domain–mediated complexes. We purified the three SARAH domains from Drosophila melanogaster and performed an unbiased pulldown assay to identify all possible interactions, revealing that isolated SARAH domains are sufficient to recapitulate the cellular assemblies and that Hippo is a universal binding partner. Additionally, we found that the Salvador SARAH domain homodimerizes and demonstrate that this interaction is conserved in Salvador's mammalian homolog. Using native MS, we show that each of these complexes is dimeric in solution. We also measured the stability of each SARAH domain complex, finding that despite similarities at both the sequence and structural levels, SARAH domain complexes differ in stability. The identity, stoichiometry, and stability of these interactions characterized here comprehensively reveal the nature of SARAH domain–mediated complex formation and provide mechanistic insights into how SARAH domain–mediated interactions influence Hippo pathway activity. Full Article
t Delineating an extracellular redox-sensitive module in T-type Ca2+ channels [Membrane Biology] By feedproxy.google.com Published On :: 2020-05-01T00:06:09-07:00 T-type (Cav3) Ca2+ channels are important regulators of excitability and rhythmic activity of excitable cells. Among other voltage-gated Ca2+ channels, Cav3 channels are uniquely sensitive to oxidation and zinc. Using recombinant protein expression in HEK293 cells, patch clamp electrophysiology, site-directed mutagenesis, and homology modeling, we report here that modulation of Cav3.2 by redox agents and zinc is mediated by a unique extracellular module containing a high-affinity metal-binding site formed by the extracellular IS1–IS2 and IS3–IS4 loops of domain I and a cluster of extracellular cysteines in the IS1–IS2 loop. Patch clamp recording of recombinant Cav3.2 currents revealed that two cysteine-modifying agents, sodium (2-sulfonatoethyl) methanethiosulfonate (MTSES) and N-ethylmaleimide, as well as a reactive oxygen species–producing neuropeptide, substance P (SP), inhibit Cav3.2 current to similar degrees and that this inhibition is reversed by a reducing agent and a zinc chelator. Pre-application of MTSES prevented further SP-mediated current inhibition. Substitution of the zinc-binding residue His191 in Cav3.2 reduced the channel's sensitivity to MTSES, and introduction of the corresponding histidine into Cav3.1 sensitized it to MTSES. Removal of extracellular cysteines from the IS1–IS2 loop of Cav3.2 reduced its sensitivity to MTSES and SP. We hypothesize that oxidative modification of IS1–IS2 loop cysteines induces allosteric changes in the zinc-binding site of Cav3.2 so that it becomes sensitive to ambient zinc. Full Article
t Atomic force microscopy-based characterization of the interaction of PriA helicase with stalled DNA replication forks [DNA and Chromosomes] By feedproxy.google.com Published On :: 2020-05-01T00:06:09-07:00 In bacteria, the restart of stalled DNA replication forks requires the DNA helicase PriA. PriA can recognize and remodel abandoned DNA replication forks, unwind DNA in the 3'-to-5' direction, and facilitate the loading of the helicase DnaB onto the DNA to restart replication. Single-stranded DNA–binding protein (SSB) is typically present at the abandoned forks, but it is unclear how SSB and PriA interact, although it has been shown that the two proteins interact both physically and functionally. Here, we used atomic force microscopy to visualize the interaction of PriA with DNA substrates with or without SSB. These experiments were done in the absence of ATP to delineate the substrate recognition pattern of PriA before its ATP-catalyzed DNA-unwinding reaction. These analyses revealed that in the absence of SSB, PriA binds preferentially to a fork substrate with a gap in the leading strand. Such a preference has not been observed for 5'- and 3'-tailed duplexes, suggesting that it is the fork structure that plays an essential role in PriA's selection of DNA substrates. Furthermore, we found that in the absence of SSB, PriA binds exclusively to the fork regions of the DNA substrates. In contrast, fork-bound SSB loads PriA onto the duplex DNA arms of forks, suggesting a remodeling of PriA by SSB. We also demonstrate that the remodeling of PriA requires a functional C-terminal domain of SSB. In summary, our atomic force microscopy analyses reveal key details in the interactions between PriA and stalled DNA replication forks with or without SSB. Full Article
t Structure-based discovery of a small-molecule inhibitor of methicillin-resistant Staphylococcus aureus virulence [Molecular Biophysics] By feedproxy.google.com Published On :: 2020-05-01T00:06:09-07:00 The rapid emergence and dissemination of methicillin-resistant Staphylococcus aureus (MRSA) strains poses a major threat to public health. MRSA possesses an arsenal of secreted host-damaging virulence factors that mediate pathogenicity and blunt immune defenses. Panton–Valentine leukocidin (PVL) and α-toxin are exotoxins that create lytic pores in the host cell membrane. They are recognized as being important for the development of invasive MRSA infections and are thus potential targets for antivirulence therapies. Here, we report the high-resolution X-ray crystal structures of both PVL and α-toxin in their soluble, monomeric, and oligomeric membrane-inserted pore states in complex with n-tetradecylphosphocholine (C14PC). The structures revealed two evolutionarily conserved phosphatidylcholine-binding mechanisms and their roles in modulating host cell attachment, oligomer assembly, and membrane perforation. Moreover, we demonstrate that the soluble C14PC compound protects primary human immune cells in vitro against cytolysis by PVL and α-toxin and hence may serve as the basis for the development of an antivirulence agent for managing MRSA infections. Full Article
t Tracking isotopically labeled oxidants using boronate-based redox probes [Methods and Resources] By feedproxy.google.com Published On :: 2020-05-08T03:41:14-07:00 Reactive oxygen and nitrogen species have been implicated in many biological processes and diseases, including immune responses, cardiovascular dysfunction, neurodegeneration, and cancer. These chemical species are short-lived in biological settings, and detecting them in these conditions and diseases requires the use of molecular probes that form stable, easily detectable, products. The chemical mechanisms and limitations of many of the currently used probes are not well-understood, hampering their effective applications. Boronates have emerged as a class of probes for the detection of nucleophilic two-electron oxidants. Here, we report the results of an oxygen-18–labeling MS study to identify the origin of oxygen atoms in the oxidation products of phenylboronate targeted to mitochondria. We demonstrate that boronate oxidation by hydrogen peroxide, peroxymonocarbonate, hypochlorite, or peroxynitrite involves the incorporation of oxygen atoms from these oxidants. We therefore conclude that boronates can be used as probes to track isotopically labeled oxidants. This suggests that the detection of specific products formed from these redox probes could enable precise identification of oxidants formed in biological systems. We discuss the implications of these results for understanding the mechanism of conversion of the boronate-based redox probes to oxidant-specific products. Full Article
t Templated folding of intrinsically disordered proteins [Molecular Biophysics] By feedproxy.google.com Published On :: 2020-05-08T03:41:14-07:00 Much of our current knowledge of biological chemistry is founded in the structure-function relationship, whereby sequence determines structure that determines function. Thus, the discovery that a large fraction of the proteome is intrinsically disordered, while being functional, has revolutionized our understanding of proteins and raised new and interesting questions. Many intrinsically disordered proteins (IDPs) have been determined to undergo a disorder-to-order transition when recognizing their physiological partners, suggesting that their mechanisms of folding are intrinsically different from those observed in globular proteins. However, IDPs also follow some of the classic paradigms established for globular proteins, pointing to important similarities in their behavior. In this review, we compare and contrast the folding mechanisms of globular proteins with the emerging features of binding-induced folding of intrinsically disordered proteins. Specifically, whereas disorder-to-order transitions of intrinsically disordered proteins appear to follow rules of globular protein folding, such as the cooperative nature of the reaction, their folding pathways are remarkably more malleable, due to the heterogeneous nature of their folding nuclei, as probed by analysis of linear free-energy relationship plots. These insights have led to a new model for the disorder-to-order transition in IDPs termed “templated folding,” whereby the binding partner dictates distinct structural transitions en route to product, while ensuring a cooperative folding. Full Article
t Crystallographic and kinetic analyses of the FdsBG subcomplex of the cytosolic formate dehydrogenase FdsABG from Cupriavidus necator [Molecular Biophysics] By feedproxy.google.com Published On :: 2020-05-08T03:41:14-07:00 Formate oxidation to carbon dioxide is a key reaction in one-carbon compound metabolism, and its reverse reaction represents the first step in carbon assimilation in the acetogenic and methanogenic branches of many anaerobic organisms. The molybdenum-containing dehydrogenase FdsABG is a soluble NAD+-dependent formate dehydrogenase and a member of the NADH dehydrogenase superfamily. Here, we present the first structure of the FdsBG subcomplex of the cytosolic FdsABG formate dehydrogenase from the hydrogen-oxidizing bacterium Cupriavidus necator H16 both with and without bound NADH. The structures revealed that the two iron-sulfur clusters, Fe4S4 in FdsB and Fe2S2 in FdsG, are closer to the FMN than they are in other NADH dehydrogenases. Rapid kinetic studies and EPR measurements of rapid freeze-quenched samples of the NADH reduction of FdsBG identified a neutral flavin semiquinone, FMNH•, not previously observed to participate in NADH-mediated reduction of the FdsABG holoenzyme. We found that this semiquinone forms through the transfer of one electron from the fully reduced FMNH−, initially formed via NADH-mediated reduction, to the Fe2S2 cluster. This Fe2S2 cluster is not part of the on-path chain of iron-sulfur clusters connecting the FMN of FdsB with the active-site molybdenum center of FdsA. According to the NADH-bound structure, the nicotinamide ring stacks onto the re-face of the FMN. However, NADH binding significantly reduced the electron density for the isoalloxazine ring of FMN and induced a conformational change in residues of the FMN-binding pocket that display peptide-bond flipping upon NAD+ binding in proper NADH dehydrogenases. Full Article
t Quantification of the affinities of CRISPR-Cas9 nucleases for cognate protospacer adȷacent motif (PAM) sequences [Molecular Biophysics] By feedproxy.google.com Published On :: 2020-05-08T03:41:14-07:00 The CRISPR/Cas9 nucleases have been widely applied for genome editing in various organisms. Cas9 nucleases complexed with a guide RNA (Cas9–gRNA) find their targets by scanning and interrogating the genomic DNA for sequences complementary to the gRNA. Recognition of the DNA target sequence requires a short protospacer adjacent motif (PAM) located outside this sequence. Given that the efficiency of target location may depend on the strength of interactions that promote target recognition, here we sought to compare affinities of different Cas9 nucleases for their cognate PAM sequences. To this end, we measured affinities of Cas9 nucleases from Streptococcus pyogenes, Staphylococcus aureus, and Francisella novicida complexed with guide RNAs (gRNAs) (SpCas9–gRNA, SaCas9–gRNA, and FnCas9–gRNA, respectively) and of three engineered SpCas9–gRNA variants with altered PAM specificities for short, PAM-containing DNA probes. We used a “beacon” assay that measures the relative affinities of DNA probes by determining their ability to competitively affect the rate of Cas9–gRNA binding to fluorescently labeled target DNA derivatives called “Cas9 beacons.” We observed significant differences in the affinities for cognate PAM sequences among the studied Cas9 enzymes. The relative affinities of SpCas9–gRNA and its engineered variants for canonical and suboptimal PAMs correlated with previous findings on the efficiency of these PAM sequences in genome editing. These findings suggest that high affinity of a Cas9 nuclease for its cognate PAM promotes higher genome-editing efficiency. Full Article
t A neuroglobin-based high-affinity ligand trap reverses carbon monoxide-induced mitochondrial poisoning [Molecular Biophysics] By feedproxy.google.com Published On :: 2020-05-08T03:41:14-07:00 Carbon monoxide (CO) remains the most common cause of human poisoning. The consequences of CO poisoning include cardiac dysfunction, brain injury, and death. CO causes toxicity by binding to hemoglobin and by inhibiting mitochondrial cytochrome c oxidase (CcO), thereby decreasing oxygen delivery and inhibiting oxidative phosphorylation. We have recently developed a CO antidote based on human neuroglobin (Ngb-H64Q-CCC). This molecule enhances clearance of CO from red blood cells in vitro and in vivo. Herein, we tested whether Ngb-H64Q-CCC can also scavenge CO from CcO and attenuate CO-induced inhibition of mitochondrial respiration. Heart tissue from mice exposed to 3% CO exhibited a 42 ± 19% reduction in tissue respiration rate and a 33 ± 38% reduction in CcO activity compared with unexposed mice. Intravenous infusion of Ngb-H64Q-CCC restored respiration rates to that of control mice correlating with higher electron transport chain CcO activity in Ngb-H64Q-CCC–treated compared with PBS-treated, CO-poisoned mice. Further, using a Clark-type oxygen electrode, we measured isolated rat liver mitochondrial respiration in the presence and absence of saturating solutions of CO (160 μm) and nitric oxide (100 μm). Both CO and NO inhibited respiration, and treatment with Ngb-H64Q-CCC (100 and 50 μm, respectively) significantly reversed this inhibition. These results suggest that Ngb-H64Q-CCC mitigates CO toxicity by scavenging CO from carboxyhemoglobin, improving systemic oxygen delivery and reversing the inhibitory effects of CO on mitochondria. We conclude that Ngb-H64Q-CCC or other CO scavengers demonstrate potential as antidotes that reverse the clinical and molecular effects of CO poisoning. Full Article
t Protecting the Environment in Areas Affected by Armed Conflict By feedproxy.google.com Published On :: Fri, 27 Sep 2019 13:10:01 +0000 Members Event 15 October 2019 - 6:00pm to 7:00pm Chatham House | 10 St James's Square | London | SW1Y 4LE Event participants Dr Marja Lehto, Special Rapporteur, International Law Commission, UNDoug Weir, Research and Policy Director, The Conflict and Environment ObservatoryChair: Elizabeth Wilmshurst CMG, Distinguished Fellow, International Law Programme, Chatham House In 2011, the UN’s International Law Commission first included the ‘protection of the environment in relation to armed conflicts’ in its programme of work. Earlier this year, the Drafting Committee provisionally endorsed 28 legal principles intended to mitigate environmental degradation before, during and after conflicts. These addressed issues ranging from the pillage of natural resources to corporate environmental conduct and the environmental stress caused by population displacement. Special Rapporteur Dr Marja Lehto and a panel of experts will discuss some of the environmental issues arising from armed conflict and how these can be tackled. What are the International Law Commission’s recommendations and to what extent are stakeholders engaging with the work? In what sense are parties to the conflict, including governments, rebel groups and civil society, accountable for environmental devastation?And, looking beyond the environmental consequences of war, what is the role of climate change in driving insecurity and triggering conflict in the first place? Members Events Team Email Full Article
t Breaking the Habit: Why Major Oil Companies Are Not ‘Paris-Aligned’ By feedproxy.google.com Published On :: Mon, 07 Oct 2019 14:50:01 +0000 Invitation Only Research Event 23 October 2019 - 8:30am to 10:00am Chatham House | 10 St James's Square | London | SW1Y 4LE Event participants Andrew Grant, Carbon Tracker InitiativeChair: Siân Bradley, Research Fellow, Energy, Environment and Resources, Chatham House The investment community is increasingly seeking to assess the alignment of their portfolios with the Paris Agreement. In a recent update to their Two Degrees of Separation report, Carbon Tracker assessed the capital expenditure of listed oil and gas producers against ‘well below’ 2C targets, and for the first time, against short-term actions at the project level.The speaker will present the key findings of the report and will argue that every oil major is betting heavily against a low-carbon world by investing in projects that are contrary to the Paris goals.This roundtable discussion will further explore the report findings and consider what investors, regulators and oil and gas companies can do to encourage alignment with the Paris Agreement ahead of 2020. Attendance at this event is by invitation only. Event attributes Chatham House Rule Department/project Energy, Environment and Resources Programme Full Article
t The Indo-Pacific: Geostrategic Perspectives to 2024 - Workshop 3 By feedproxy.google.com Published On :: Mon, 14 Oct 2019 09:10:01 +0000 Invitation Only Research Event 17 October 2019 - 9:30am to 2:00pm Institut Francais des Relations Internationales, 27 rue de la Procession, 75740 Paris Cedex 15, France This closed-door roundtable explores possible strategic shifts in the Indo-Pacific between now and 2024. Focusing on trade security, climate change disruptions and security cooperation, it aims to enhance the understanding of the regional goals of, and strategic relationships between, the key countries active in the region.The workshop is part of a larger project funded by the Strategic Policy Division of the Australian Department of Defence. The project includes workshops in the United States, the United Kingdom, France, Japan, India and the Pacific Islands (Tonga).Attendance at this event is by invitation only. Department/project Asia-Pacific Programme, Geopolitics and Governance, Sustainable and Inclusive Growth, Trade, Investment and Economics, Energy, Environment and Resources Programme, Geostrategic Outlook for the Indo-Pacific 2019-2024 Anna Aberg Research Analyst, Energy, Environment and Resources Programme 020 7314 3629 Email Full Article
t Iseoluwa Akintunde By feedproxy.google.com Published On :: Fri, 18 Oct 2019 11:46:40 +0000 Mo Ibrahim Foundation Academy Fellow, Energy, Environment and Resources Programme Biography Iseoluwa is Mo Ibrahim Fellow in the Energy, Environment and Resources programme where his research examines the international and national institutions responsible for the effectiveness of climate finance in developing countries, and how these frameworks interact with those of development assistance.He is qualified to practice law in Nigeria and has worked with a leading Nigerian law firm where he provided legal, policy and institutional advisories on environmental, natural resources, energy and climate change, and anti-corruption issues.He was an Erin JC Arsenault Fellow in Space Governance and holds a Master of Laws degree in Air and Space Law from the McGill Institute of Air and Space Law.Iseoluwa was previously a visiting researcher at the International Centre for Climate Change and Development, Bangladesh and the Department of Climate Change of the Federal Ministry of Environment in Nigeria where he researched on the governance of climate finance in developing countries.His broader research interests include the governance framework for the exploitation of the mineral resources in outer space. Areas of expertise Climate finance and development assistanceThe legal regime for the exploitation of the mineral resources in outer space, the Moon and celestial bodiesInternational air and space lawInternational law, international environmental law and governance Past experience 2019Researcher, Centre for International Governance Innovation, Waterloo Canada2018Visiting researcher, Department of Climate Change, Federal Ministry of Environment, Abuja Nigeria2018Visiting researcher, International Centre for Climate Change and Development, Dhaka Bangladesh 2013 - presentAssociate, Wole Olanipekun & Co., Lagos Nigeria Email @Ise0luwa LinkedIn Full Article
t Tackling Toxic Air Pollution in Cities By feedproxy.google.com Published On :: Mon, 28 Oct 2019 16:15:01 +0000 Members Event 27 November 2019 - 6:00pm to 7:00pm Chatham House | 10 St James's Square | London | SW1Y 4LE Event participants Camilla Hodgson, Environment Reporter, Financial TimesDr Benjamin Barratt, Senior Lecturer in Chinese Environment, KCLDr Susannah Stanway MBChB MSc FRCP MD, Consultant in Medical Oncology Royal Marsden NHS Foundation TrustElliot Treharne, Head of Air Quality, Greater London AuthorityChair: Rob Yates, Head, Centre on Global Health Security, Chatham House Air pollution has been classified as a cancer-causing agent with evidence showing an increased risk of lung cancer associated with increasing levels of exposure to outdoor air pollution and particulate matter.Air pollution is also known to increase risks for other diseases, especially respiratory and heart diseases, and studies show that levels of exposure to air pollution have increased significantly in some parts of the world - mostly in rapidly industrializing countries with large populations.In coordination with London Global Cancer Week partner organizations, this event outlines the evidence linking air pollution and cancer rates in London and other major cities.Panellists provide a 360° picture of the impact of the rising incidence of cancer across the world, the challenges the cancer pandemic poses to the implementation of universal health coverage and the existing UK contribution to strengthening capacity in cancer management and research in developing countries. Department/project Global Health Programme Members Events Team Email Full Article
t Climate, Food and Land By feedproxy.google.com Published On :: Wed, 30 Oct 2019 11:05:01 +0000 Members Event 13 November 2019 - 1:00pm to 2:00pm Chatham House | 10 St James's Square | London | SW1Y 4LE Event participants Professor Tim Benton, Director, Energy Environment and Resources Department, Chatham HouseChair: Laura Wellesley, Research Fellow, Energy, Environment and Resources Department, Chatham House In the summer of 2019, a major report on climate change and land use was released by the Intergovernmental Panel on Climate Change (IPCC).Prepared by 107 climate scientists, the report outlined the ways in which human activities have led to the degradation of land, increasingly turning the resource into a source of carbon, and not just a carbon sink, and thus mitigating the land’s ability to help curb climate change. Against this backdrop, one of the report’s authors, Professor Tim Benton, reflects on the relationship between land, food and climate change.He considers the challenges created by competing demands for the services land produces - such as food, energy, biodiversity and carbon storage - and the ways in which these demands are driving climate change and the degradation of land around the world.How can governments, corporations and civil society best manage competing demands over land use? Faced with growing populations and a need to maintain food security, what are the limits to the contribution of land in addressing climate change? And what is the role of changing societal demand, especially for meat produce, in mitigating the pressure on land? Event attributes Livestream Members Events Team Email Full Article
t Negative Emissions and Managing Climate Risks Scenarios By feedproxy.google.com Published On :: Thu, 31 Oct 2019 18:15:01 +0000 Research Event 4 July 2019 - 1:30pm to 5:00pm Chatham House | 10 St James's Square | London | SW1Y 4LE This half-day strategic workshop, organized by Chatham House and E3G, brought together key climate experts, policymakers and influential actors, especially in Europe, for a focused and facilitated discussion on the roles, risks and potentials of negative emissions technologies (NETs). An interactive scenario exercise will be conducted, drawing on a climate simulation tool developed by Climate Interactive, to consider the potential roles and risks of different NETs deployments to meet the Paris Agreement targets and to consider the international co-operation required to manage the pathway to net-zero emissions. Participants will explore the political opportunities, discuss different scenarios and risks and identify areas of interventions and collective action.The meeting is part of a series of events being held at Chatham House as part of London Climate Action Week (LCAW). Department/project Energy, Environment and Resources Programme, Bioenergy, Carbon Capture and Storage (BECCS) Full Article
t Chile’s Social Unrest: Why It’s Time to Get Serious about a ‘Just’ Transition By feedproxy.google.com Published On :: Mon, 04 Nov 2019 15:40:38 +0000 4 November 2019 Patrick Schröder Senior Research Fellow, Energy, Environment and Resources Programme @patricks_CH Google Scholar President Sebastián Piñera’s decision to cancel the COP25 climate negotiations, which Chile was due to host in early December, shows the importance of ensuring the transition to a sustainable world is just. 2019-11-04-Chile-Protests.jpg Demonstrators march in Santiago, Chile during street protests which erupted over a now suspended hike in metro ticket prices. Photo: Getty Images. One year ago, during the last annual Conference of Parties (COP) held in Katowice, the Polish government launched a Solidarity and Just Transition Declaration, signed by 56 governments including the UK, making the case for why the green transition must be just.Three years earlier in 2015, the landmark Paris Agreement also included provisions for a just transition where it stated that the decarbonization process should be ‘Taking into account the imperatives of a just transition of the workforce and the creation of decent work and quality jobs in accordance with nationally defined development priorities’. In practice, however, the concept of a just transition has not yet been implemented and has not been sufficiently considered by governments or corporations around the world.The social unrest that has erupted in Chile’s capital Santiago over the past month, which has forced the Chilean government to ask to move this year’s COP to Madrid, is a case in point. This discontent clearly shows that climate action cannot be separated from social justice concerns. There has not been a real commitment by governments to ensure a just transition based on social dialogue from the local to the national level. This was seen in France with the gilets jaunes protests in November 2018 – one month after President Emmanuel Macron ended the so-called ‘fortune tax’ and instead introduced taxes on diesel fuel as part of an effort to transition to green energy – and the current situation in Chile has some striking parallels. Sustainability transitions are a complex web of political choices and investment decisions which affect countries and societies in many different ways. Questions of social justice are everywhere, but in most cases, poorly understood by decision-makers. For example, although poverty has been reduced significantly over the last decade, Chile has one of the worst rates of inequality in Latin America and the highest Gini index in the OECD. The decisions taken in 2017 to power Metro de Santiago with solar photovoltaics and wind energy are commendable from a climate perspective, however, it led to students and young people protesting against rises in subway fares in October 2019.They were joined by Chileans who are frustrated with rising living costs and by workers and trade unions struggling with low wages. As reported by the Chilean Human Rights Commission (INDH), so far more than 4,200 people have been arrested and more than 1,300 injured and hospitalized.Climate negotiations beyond technicalitiesThis time there is also another important dimension to the protests: social unrest as a reaction to worsening inequality has the potential to derail multilateral cooperation on climate change and other global issues. Since tackling climate change is a race against the clock, the world faces the challenge of addressing both urgency and equity. The world cannot afford delays and needs to move fast but decision-makers need to take time for deliberation and civic participation to avoid rapid and ill-conceived transitions which eventually meet public resistance.Many technical experts and negotiators, who often unintentionally divorce climate policy and technical discussions about emission reductions from social justice concerns, have been caught by surprise by the cancellation of the negotiations. For this year’s COP, one important focus of the official negotiations are the so-called 'Article 6 Rules' – the accounting mechanisms and modalities for a new form of international interaction on carbon markets and off-setting to ensure carbon markets can support countries in enhancing the ambitions of their stated climate action, known as Nationally Determined Contributions (NDCs). What is becoming much more obvious now is that just transitions are at least equally important for achieving NDCs and other long-term mitigation strategies.In order to meet the 1.5 degree target, stated by the Intergovernmental Panel on Climate Change (IPCC), the world will have to invest an average of around $3 trillion a year over the next three decades in transforming its energy supply systems. But how can we ensure that these investments benefit low-income communities? Will they further increase everyday living costs? The climate finance related discussions focussing on commercially-oriented investments for low-carbon energy systems in most cases only consider the aspect of affordability, but not the other important principles of alternative ‘just’ energy finance, such as good governance, due process, intra-generational equity, spatial equity and financial resilience. Investments to support just transitions need to ensure investments, not only for large energy infrastructure, but also in the jobs, skills and work vital to both adaptation and mitigation.Just transitions for a circular economy The just transition concept is also the entry point to broader discussions about inclusive economic transformations, questioning the dominant paradigm of consumerism and ending the wasteful use of critical resources. The current linear economic model of take-make-throw away – in Chile epitomized by the linear extractive model of the mining sector that has contributed to widening inequality – the linear extractive model is not only destructive on the natural environment but also destructive for social cohesion.In Chile, the commodity boom in copper production – the country accounts for about 30 per cent of the world’s output – and more recently lithium – which is used in batteries for mobile phones, laptops and electric cars – have generated enormous prosperity in Chile. But the wealth has been unequally distributed and has not been used to lay the foundation for raising the overall level of incomes.A socially embedded and inclusive circular economy can, therefore, be a way forward from the current situation the Latin American country finds itself in. The circular economy was intended to feature prominently during the 25th COP and Chile’s policies – from the Ministry of Environment and Chile's Production Development Corporation (CORFO) – have played an important role in supporting the development of a circular economy, launching in 2018, the first public circular economy programme in Latin America. The government’s support for start-up companies and entrepreneurs to develop inclusive circular economy business models is the right approach to addressing the issues of waste, employment, services for low-income communities and local economic development. These are solutions that need to be scaled up having the potential to reduce Chile’s economic reliance on the dominant extractive model.As a global community, it is necessary to address the environmental and social objectives equally as not addressing social objectives will become an obstacle in achieving climate mitigation and solving other environmental issues. The Chilean protests are a wake-up call and present an opportunity for the global climate change community – which includes governments – to ensure just transitions are implemented in practice. Full Article
t China's ivory bans: enhancing soft power through wildlife conservation By feedproxy.google.com Published On :: Wed, 06 Nov 2019 09:20:21 +0000 6 November 2019 , Volume 95, Number 6 Jonas Gamso Read online China has been a major market for elephant ivory for centuries. However, the Chinese government recently enacted bans on imports and exports of ivory (2015) and on the domestic ivory trade (2017). These bans appear to have come in response to intensive influence campaigns and public shaming from domestic and foreign activists, who cited declining elephant populations and highlighted China's role. However, this shaming-narrative is at odds with conventional wisdom regarding Chinese policy-making: China typically resists international pressures and its authoritarian government is thought to be largely insulated from domestic efforts by civil society groups. This article reconciles Beijing's ivory policy with these conventional beliefs about policy-making in China. I argue that the Chinese government saw unique benefits to banning the ivory trade, under growing international scrutiny, as doing so enhanced Chinese soft power while having very little impact on its sovereignty or development. Non-government organizations (NGOs) operating both inside and outside of China played a role as well: NGOs in China helped to shift Chinese public opinion towards favouring the bans, while those operating abroad led public relations efforts to publicize Chinese demand for ivory to foreign audiences. Efforts by the latter group of NGOs intensified pressure on the Chinese government to rein in the ivory market, while increasing the soft power benefits that banning ivory would bring to Beijing. Full Article
t How Qatar’s Food System Has Adapted to the Blockade By feedproxy.google.com Published On :: Thu, 14 Nov 2019 14:43:46 +0000 14 November 2019 Laura Wellesley Research Fellow, Energy, Environment and Resources Programme @laurawellesley Two-and-a-half years on from the imposition of a trade blockade against Qatar by the Arab Quartet, Qatar’s food system has undergone a remarkable transformation – but it is one that brings new risks to Qatar’s future food and resource security. 2019-11-14-QatarCows.jpg Cows are are fed at a dairy factory at Baladna farm in al-Khor, Qatar. Photo: Karim Jaafar/AFP via Getty Images. Earlier this month, Sheikh Tamim – the emir of Qatar – hailed the country’s success in overcoming the impacts of the embargo levied by the so-called Arab Quartet – Bahrain, Egypt, Saudi Arabia and the United Arab Emirates (UAE). Qatar will post a budget surplus for the first time in three years, and the country’s long-term plan for economic diversification has taken great strides, according to the emir. Key among the achievements cited was the advancement of Qatar’s domestic food industry.When the blockade was introduced in June 2017, it threw the vulnerability of Qatar’s domestic food supply to outside interruption into sharp relief. Qatar is poorly suited to growing food. The desert country ranks as the most water-stressed in the world. As one of the hottest, most arid countries in the world, trade is critical to feeding the nation; over 90 per cent of its food supply is imported.Most of Qatar’s cereal imports – including 80 per cent of its wheat supply – arrive by sea from exporters including India, Russia and Australia. Sitting on the eastern edge of the Persian Gulf, Qatar’s only maritime gateway to the world is the Strait of Hormuz. This narrow body of water can, as events this summer have shown, be disrupted by geopolitical events. But for 40 per cent of overall food imports, overland trade from Saudi Arabia was Qatar’s primary supply channel before June 2017 – particularly so for dairy products and fresh fruit and vegetables coming from the EU, Turkey and Jordan.The abrupt closure of Saudi Arabia’s borders prompted significant private investment in Qatar’s own food industry; domestic production has reportedly increased four-fold since the blockade was introduced. Prior to the blockade, Qatar imported 85 per cent of its vegetables; it now hopes to produce 60 per cent within the next three years. Perhaps even more remarkably, the country is now self-sufficient in dairy, having previously relied on imports for 72 per cent of its supply.This progress has come at a cost. Qatar’s booming domestic industry is highly resource-intensive. To fill the gap in the dairy sector, Baladna – the country’s principal dairy producer – imported around 18,000 Holstein dairy cows from the EU and US. The company is thriving; in June of this year, it made its first dairy exports.But the desert is not a natural environment for these cows; they must be kept indoors, at temperatures around 15°C cooler than the outside air, and misted with water to prevent overheating. The cooling systems are a huge drain on local resources. Each dairy cow requires an average of 185 gallons of water a day, almost twice the volume used by the average Qatari household. The majority of this water comes from oil- or gas-powered desalination plants; the cooling systems themselves run on gas-fired electricity.Qatar has traditionally invested in production overseas – particularly in Sudan and Tanzania – to secure its fodder supply, but the government has plans to become self-sufficient in fodder crops such as lucerne (alfalfa) and Rhodes grass. This will require irrigation on a vast scale. Qatar’s farmland is mostly located in the north of the country where it benefits from aquifers; fodder production already accounts for half of the groundwater extracted for use in agriculture.Despite commitments made under the National Food Security Programme to improving the water efficiency of Qatar’s food production, the rate of draw-down of these aquifers exceeds their recharge rates. Overexploitation has resulted in saline intrusion, threatening their long-term viability. With 92 per cent of all extracted groundwater given to farmers free of charge, there is little incentive for economizing on its use.Increasing production will also likely mean increasing fertilizer use; rates of fertilizer use in Qatar are among the highest in the world, second only to those in Singapore.Both government and industry are taking small steps to ‘green’ the country’s food production. Certain local authorities plan to ban the use of groundwater for fodder production by 2025, requiring producers to use treated sewage water instead and reserving the use of groundwater for crop production.A number of companies are also adopting so-called ‘circular’ practices to achieve more efficienct resource use; Agrico, a major vegetable producer, has expanded its organic hydroponics operations, a move the company reports has led to a 90 per cent reduction in water use. But, with a target to produce up to 50 per cent of Qatar’s fresh food supply domestically within just a few years, scattered examples of resource-saving strategies will not be enough to mitigate the rise in water demand.As Qatar looks to continue growing its food industry in the wake of the blockade, it is from Saudi Arabia – ironic though it may be – that Qatar stands to learn important lessons.Saudi Arabia’s scaling up of domestic wheat production – initially to achieve self-sufficiency and then to support a prosperous export industry – was ultimately a failed effort. The unsustainable extraction of groundwater – fuelled by generous subsidies for wheat producers and the nominal cost of diesel for pumping – brought the country’s water table to the brink of collapse, and the government was forced to make a dramatic U-turn, reducing then removing the subsidies and shrinking its wheat sector.The UAE also provides an instructive example for how domestic food production may be supported – this time positive. This summer, the Department of Environment in Abu Dhabi announced its Recycled Water Policy, laying out a policy framework to promote and facilitate reused water across all major sectors, including agriculture.Back in 2014, the Ministry of Climate Change and Environment set hydroponics as a key priority, launching a 100 million Emirati dirham fund to incentivize and support farmers establishing hydroponic farms. And the International Center for Biosaline Agriculture, based in Dubai and supported by the UAE government, undertakes pioneering research into sustainable food production in saline environments.On the face of it, Qatar has indeed bounced back from the blockade. As and when cross-border trade is re-established with Saudi Arabia, Qatar will boast a more diverse – and more resilient – network of trade relationships than it did prior to June 2017.In addition to investment in domestic food production, the blockade also provoked a rapid recalibration of Qatar’s trade relationships. Allies in the region – most notably Turkey and Iran – were quick to come to Qatar’s assistance, delivering fresh produce by air. Since then, Qatar has scaled up its trading relationship with both countries.It has also leveraged its position as the world’s largest exporter of liquid natural gas to establish new maritime trade lines with major food exporters, including India. Should tensions spike again in the future, it will be in a stronger position to weather the storm.But, in the absence of a commitment to support the widespread adoption of circular agricultural technologies and practices, Qatar’s commitment to increasing its self-sufficiency and expanding its domestic production could ultimately undermine its long-term food security.Rising average temperatures and increasingly frequent extreme weather events – like the heatwave in 2010 when temperatures soared to over 50°C – will exacerbate already high resource stress in the country. Unsustainable exploitation of finite land, water and energy reserves will limit the country’s long-term capacity to produce food and weaken its ability to withstand future disruptions to regional and international supply channels.As Qatar continues in its efforts to secure a reliable food supply, it would do well to heed the experience of its neighbours, be they friend or foe. Full Article
t A Transformative Agenda for Greater Sustainability in Trade By feedproxy.google.com Published On :: Fri, 15 Nov 2019 10:25:01 +0000 Corporate Members Event Nominees Breakfast Briefing Partners and Major Corporates 3 December 2019 - 8:00am to 9:15am Chatham House | 10 St James's Square | London | SW1Y 4LE Event participants Christophe Bellmann, Associate Fellow, Hoffmann Centre for Sustainable Resource Economy, Chatham HouseCarolyn Deere Birkbeck, Associate Fellow, Global Economy and Finance Department and Hoffmann Centre for Sustainable Resource Economy, Chatham House International trade rules and policies are deeply relevant to environmental performance. On the one hand, trade flows, rules and policies can exacerbate environmental challenges as consumers regularly purchase goods produced or disposed of in unsustainable ways in other countries therefore 'exporting' environmental costs. On the other hand, trade rules and flows can be harnessed to support environmental agendas and impact commercial and trade prospects positively.The speakers will discuss the urgent need for greater political leadership and inclusive policy dialogue on environment and trade to address its development and competitiveness. Which priorities should form the heart of a forward-looking environment and trade 2.0 agenda in the context of the UN’s SDGs? What role can international trade play in helping deliver sustainable food and land use systems? And how can stakeholders promote the scaling-up of the many initiatives underway and serve as a vehicle for transformative change toward a more sustainable economy at the national and international level?This event is only open to Major Corporate Member and Partner organizations of Chatham House. If you'd like to attend, please RSVP to Linda Bedford.To enable as open a debate as possible, this event will be held under the Chatham House Rule. Members Events Team Email Full Article
t Exploring the Looming Water Crisis By feedproxy.google.com Published On :: Tue, 26 Nov 2019 16:12:28 +0000 28 November 2019 Gitika Bhardwaj Editor, Communications & Publishing, Chatham House @GitikaBhardwaj LinkedIn Loïc Fauchon President, World Water Council Loïc Fauchon, president of the World Water Council, speaks to Gitika Bhardwaj about the causes of water scarcity around the world and how best to implement sustainable solutions. GettyImages-686773184.jpg Dry sand and a narrow body of water near the Theewaterskloof Dam in South Africa which has had less than 20 per cent of its normal water capacity during recent water shortages. This dam, about 108km from Cape Town, is the main water source for residents of the city. Photo: Getty Images. One-quarter of humanity faces a looming water crisis, including the prospect of running out of water, which may seem inconceivable when 70 per cent of the Earth’s surface is water. Nevertheless up to 80 per cent of available surface and groundwater is being used every year and water demand globally is projected to increase by 55 per cent by 2050. Why is the world facing a crisis of water scarcity and what is driving the increasing demand for water? The first reason that is causing water stress around the world is the growing human population at the same time as the water supply has remained the same. Given that there are almost one billion more inhabitants on Earth every 15-20 years, this has led to a progressive deficit in the global water supply. The second reason is due to the uneven concentration of the global population. There is not a clear link between the presence of the population in some regions and the presence of water, in other words, water is not where we want it to be every time.For example, there is, what we call, a ‘triangle of thirst’ from southern Spain, to Pakistan, to the Horn of Africa and back again. In this triangle, you have around two billion people in a very water-scarce region.Comparatively, if you go to Russia or Canada, they have more water than they need in terms of the size of their population. So this is another crucial reason we are facing a crisis of water scarcity in some regions of the world – but not everywhere. Climate [change] will be the fruit on the cake. Currently we have global population growth and then later we will have climate change affecting water availability. But at this very moment, however, the problem for water suppliers and for political leaders is the demographic crisis we are facing – not the climate.Water use has grown at more than twice the rate of the human population over the last century in part due to industries, such as agriculture, which account for 70 per cent of global freshwater use. Given that food production will need to grow by up to 70 per cent by 2035 to feed the growing human population, how do we balance the use of water with the need to provide food? There are some solutions. The first is that we need to improve water efficiency in the agricultural sector. We need to have all around the world, but mostly in developing countries, a better capacity to increase the water efficiency of agriculture without increasing the use of industrial chemical products and to move, step-by-step, to an economical system of organic farming. It will take time – it will not be done in one or even five years but more likely over a generation – but it is the best way. Secondly, which could be a faster solution, is that we have to reduce all kind of food waste which represents around 30-40 per cent of all agricultural production. Agriculture is a large sector involving the growing of crops but also livestock. There’s not only waste in terms of consumption but also during the production line, for example, during the transportation of food products. So there is this, sort of, waste cycle which is very important to consider. If you are able to reduce the water waste during the production line by 30-40 per cent, then you use less water, obviously.The third solution is to be able to, step-by-step, change our consumption patterns. Use less meat, all kinds of agricultural products which need a lot of water etc. I think we will be obliged to do this over the next couple of decades, and we will probably have low animal protein diets in the future, which will mean we have to think of different ways to be able to provide food to the increasing global population.There are other industries that are water-intensive that also need to be looked at in terms of their water waste such as the clothing and automobile industries. One piece of paper, for example, takes about 100 litres of water to produce while one litre of milk takes about 1,000 litres of water. Another example is that one cup of coffee takes 150 litres of water – just one cup of coffee – that’s because there is not only the water you are drinking but the water needed to prepare the coffee beans and the water used in the materials that make the coffee cup and so on.So everything consumes water and that’s why humans will be obliged to consume less water over the coming years. More than one in three people globally do not have access to safe drinking water and more than 4 billion people lack adequate sanitation. How can waste water be more efficiently used and do you think global goals to provide everyone with safe and clean drinking water are still realistic? In French, we use a phrase, parent pauvre, which means poor relative. Most of the decisions concerning access to water are not acceptable in the long term. That’s why we at the World Water Council are pushing for the financing of water and sanitation goals [concurrently].For example, if you have a programme for a city to increase access to water for its citizens, they also need a sanitation programme. If we don’t do that, the mismatch that currently exists between water and sanitation will remain. There’s also another important solution which political leaders will be obliged to invest more in which is having more water coming from water reuse. If you produce water from water reuse processes then it means that it will likely have undergone sanitation treatment already which is a win-win solution [for providing safe and clean drinking water].It’s all moving slowly but I’m optimistic concerning the increasing consciousness of people regarding water pollution – for example the pollution of our rivers, seas and oceans – and I think we will move faster in the sanitation area than in the water access area over the next decade.Personally, I do not think that global goals to provide everyone with safe and clean drinking water [are the best solution]. I am more in favour of national and local commitments rather than global commitments. National and local efforts are stronger then [the rhetoric] around global goals where there is no authority to oversee the progress they are making. Only the population of a country or of a city can see if their leaders have done their job regarding providing access to safe and clean water. People queue up to collect water from taps fed by a spring in Newlands in 15 May 2017 in Cape Town, South Africa. South Africa's Western Cape region declared a drought disaster on 22 May 2017 as the province battled its worst water shortages for more than 112 years. Photo: Getty Images. With the depletion of global water supplies, how can governments avoid the politicization of water, as seen in cases such as the Nile River Basin and across the Middle East, to avoid conflicts over water? This is a complicated issue because politicians will always do politics so it will always be difficult to avoid attempts to politicize situations. But the key is dialogue, dialogue and dialogue. That is the only way to solve water conflicts as well as better management of water because, in some regions, some of these conflicts are arising from the mismanagement of water supplies – not because of water scarcity. If you look at Egypt and the US, people are consuming around 800 litres [of water] per day whereas in Europe people are consuming around 200 litres per day. But why is [water consumption] in Egypt, rather than Europe, the same as in the US? Because they have considerable water losses in industries such as agriculture.In addition, in the main cities like Cairo, there is not an adequate range of water networks, so, if in the future those living in Cairo are able to consume less water, they will need less water coming from the Nile River which will make politicization of water by politicians less likely. In the future, social unrest from water shortages is likely, however, I do not think it will ever lead to wars. Countries across the Middle East have invested in modern techniques, such as desalination plants, as an answer to water scarcity, but this can have a negative impact, notably on marine life. In contrast, some of the more ancient techniques, like rainwater harvesting, are being repurposed in cities around the world today. What is your view on these practices and what other solutions are available? There are a lot of solutions and desalination is among them. Currently probably 100 countries in the world are using, or preparing to use, desalination as a solution so it surely is an important solution. But at the same time, reused water is developing fast and is a much cheaper option than desalination. Nevertheless, the price of desalination has been decreasing over the past 20 years and is now less than $1 a cubic metre, whereas 15 years ago, it was $10 a cubic metre.Some of the negative impacts of desalination exist when you are separating the water from the salt, which can lead to disasters, for example, what has happened in the Persian Gulf. When Kuwait, Saudi Arabia, Bahrain and Qatar first used desalination treatments, the temperature of the sea was around 30°C, whereas today, it can be up to 40°C. This increasing sea temperature as a result of the desalination plants has contributed to changes in biodiversity. For example, we are seeing fish disappearing and even the growing population of giant jellyfish – which some desalination plants in Saudi Arabia are dealing with by using shredders which is another type of disaster.Furthermore, in some regions, we need to keep in mind that desalination is not only along the coast but it’s also in the middle of the land too. For example, in the Sahara region, like in Algeria or Morocco, the water coming from the ground is salted so you need to have desalination plants inland and not on the coast. But where they keep the salt inland, that salt mixes with the rain and enters the ground, thereby destroying some of the biodiversity there too. So it must be used prudently. Rainwater harvesting is a technique from centuries ago and I am a great supporter of it as a solution to water scarcity in India, particularly in Rajasthan, and I think it could also be part of the solutions in some places across Africa.That’s why I believe there needs to be an exchange of solutions because something which is successful here could be successful somewhere else. In this way, we need to be able to show a Senegalese farmer a solution which has been implemented elsewhere, such as in India, and show him this can work for you too – it’s sort of like when the Japanese built the Toyota by looking at the British Land Rover.With billions of people threatened by the global water crisis, increased water stress could lead to more ‘Day Zeroes’, a term used in 2018 as Cape Town in South Africa came dangerously close to running out of water. In your view, what will happen if the world doesn’t adequately address the global crisis of water scarcity?The increasing absence of water would mean not only the migration of humans to more water-abundant regions but also the absence of socioeconomic growth of any kind in some places because water scarcity will pose a risk to businesses who will be forced to move to new areas – from small businesses like a hairdresser to factories that are unable to produce any goods or provide any services. So not tackling the water crisis means not being able to tackle our own capacity to prosper by not protecting the environment we depend on.In Cape Town, there was a lack of rain in the city which contributed to the water crisis there but there was also a lack of water management. They knew they could have a lack of rain, and when you have a lack of rain, you have the obligation to prepare a reservoir of water for the year to the next year and so on but that did not happen.There is a French poem from Jean de La Fontaine about a grasshopper and an ant. The grasshopper just spends his time in the summer enjoying life but the ant keeps working hard throughout the summer to save all of his supplies for the winter. In this way, we need to be like the ant, preparing water supplies for today and for tomorrow.In the case of Cape Town, there was also another element, which was that the water supplies were being used by the central government as a tool to isolate the regional governor there who was part of the opposition. So the lack of water management was almost used as a political tool as we discussed earlier.Some say that the water scarcity we are seeing is because of climate change. Yes it is but there is also a lack of water management by humans. If you look at the people living throughout the centuries all the way to antiquity, you see that people around the world prepared reservoirs of water to keep water from the winter to the summer, from the one year to the next, whereas today, we are seeing bad water management. So, in this way, I believe climate change should not be the scapegoat of human error. Full Article
t Making the Business Case for Nutrition Workshop By feedproxy.google.com Published On :: Thu, 05 Dec 2019 12:15:01 +0000 Invitation Only Research Event 28 January 2020 - 9:30am to 5:00pm Chatham House | 10 St James's Square | London | SW1Y 4LE A ground-breaking research project from Chatham House, supported by The Power of Nutrition, is exploring the business case for tackling undernutrition, micronutrient deficiencies and overnutrition. Companies across all sectors hold huge, transformative power to save countless lives and transform their own financial prospects. To act, they need more compelling evidence of the potential for targeted investments and strategies to promote better nutrition and create healthier, more productive workforces and consumers.At this workshop, Chatham House will engage business decision-makers in a scenario exercise that explores different nutrition futures and their commercial prospects in each before examining what different strategies business can pursue to maximize future profitability through investments in nutrition.Attendance at this event is by invitation only. Department/project Energy, Environment and Resources Programme Full Article