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Jiangwen Guo

Senior Research Fellow, Energy, Environment, and Resources Programme




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Thiago H. K. Uehara

Research Fellow, Energy, Environment and Resources Programme

Biography

Thiago Uehara, political ecologist, is a research fellow at Chatham House. Before joining its Energy, Environment and Resources programme in 2019, Thiago served as technical adviser to the Brazilian Presidency, consultant to the Intergovernmental Panel on Climate Change (IPCC), and senior consultant to Fundação Getulio Vargas (FGV), to name a few.

Thiago is a policy analyst and environmental social scientist working with public policy, rural development and sustainability since 2006. He holds degrees in Geographical Research (University of Cambridge), Public Administration (FGV), Environmental Science (University of São Paulo Institute of Energy), Environmental Management (University of São Paulo School of Agriculture), and Music (Villa-Lobos Institute).

He also studied at the Institute of Development Studies/STEPS Centre, at AgroParistech-Engref, and is completing his PhD at Imperial College London’s Centre for Environmental Policy on the politics of retrenchment and the impacts of austerity for peasant livelihoods in the Amazon and in São Paulo.

He is a founder member of the Brazilian Research Network on Food Sovereignty, Nutrition and Food Security, and advises students at Imperial College London. Languages: PT, EN, FR, ES.

Areas of expertise

  • Sustainable livelihoods, rural development, food sovereignty
  • Environmental policy and management; nature-base solutions; forest restoration
  • Public procurement; sustainable procurement
  • Wellbeing economies and just transformations to sustainability
  • International development; Global South; Brazil

Past experience

2016-2019Consultant, IPCC WG3 Supervisor and research postgraduate, Imperial College London
2012-2019Technical adviser, Presidency of Brazil
2012-2019Lecturer, National School of Public Administration
2012-2019Environmental specialist, Ministry of the Environment, Brazil
2010-2012Researcher, FGV Centre for Sustainability Studies
2010-2012Senior consultant, FGV Centre for Public Administration
2007-2010Environmental manager, São Paulo Environmental Agency




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COP26 Diplomatic Briefing Series: Climate Change and National Security

Research Event

25 March 2020 - 9:00am to 10:30am

Event participants

Lieutenant General Richard Nugee, Departmental Lead for Climate Change and Sustainability in the UK Ministry of Defence
Rear Admiral Neil Morisetti, Vice Dean (Public Policy) Engineering Sciences at the University College London and Associate Fellow at Chatham House
Dr. Patricia Lewis, Research Director for Conflict, Science and Technology, and Director of the International Security Programme at Chatham House
Professor Yacob Mulugetta, Professor of Energy and Development Policy at the University College London
Chair: Glada Lahn, Senior Research Fellow, Chatham House
Extreme weather, rising sea levels and a melting Arctic - the effects of climate change are posing an increasingly large threat to national security worldwide. Although the issue has gained traction within the international community in recent years, including within the UN Security Council, it is urgent that governments act more decisively to mitigate and respond to the threat, not least given that climate change is happening faster and in a more powerful way than originally anticipated.
 
The third event in the Chatham House COP26 Diplomatic Briefing Series – 'Climate Change and National Security' - will analyze how climate change acts as a threat multiplier, fuelling instability and endangering economic, social and political systems across the globe. The briefing will also provide recommendations of what governments and other stakeholders should do to develop effective responses.
 

Anna Aberg

Research Analyst, Energy, Environment and Resources Programme
020 7314 3629




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COP26 Diplomatic Briefing Series: Money Matters: Climate Finance and the COP

Research Event

20 April 2020 - 9:00am to 10:30am

Event participants

Tenzin Wangmo, Lead Negotiator of the Least Developed Countries (LDC) Group 
Mattias Frumerie, Director at the Swedish Ministry for Foreign Affairs
Rachel Ward, Programme Director and Head of Policy at the Institutional Investors Group on Climate Change
Iseoluwa Akintunde, Mo Ibrahim Academy Fellow at Chatham House
Chair: Kirsty Hamilton, Associate Fellow, Chatham House

Finance plays a key role in enabling climate change mitigation and adaptation. It is also a contested issue in the UN climate negotiations. The fourth event in the Chatham House COP26 Diplomatic Briefing Series will explore the politics of climate finance in the context of the COP, and provide a comprehensive update of the main climate finance-related negotiation items and processes. The topic is particularly timely given that the UK Government has made climate finance one of its top thematic priorities for COP26 and that 2020 constitutes the deadline for developed countries to mobilise USD 100 billion per year to support climate action in developing countries.

Anna Aberg

Research Analyst, Energy, Environment and Resources Programme
020 7314 3629




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Privileging Local Food is Flawed Solution to Reduce Emissions

23 April 2020

Christophe Bellmann

Associate Fellow, Hoffmann Centre for Sustainable Resource Economy
The COVID-19 pandemic has brought food security and food imports to the forefront again. Some fear that the crisis could quickly strain global food supply chains as countries adopt new trade restrictions to avoid domestic food shortages.

2020-04-23-Trade-Food-Apples

Apples being picked before going into cold storage so they can be bought up until Christmas. Photo by Suzanne Kreiter/The Boston Globe via Getty Images.

The pressure of the coronavirus pandemic is adding to a widely held misconception that trade in food products is bad for the environment due to the associated ‘food miles’ – the carbon footprint of agricultural products transported over long distances.

This concept, developed by large retailers a decade ago, is often invoked as a rationale for restricting trade and choosing locally-produced food over imports. Consuming local food may seem sensible at first glance as it reduces the carbon footprint of goods and generates local employment. 

However, this assumption ignores the emissions produced during the production, processing or storage stages which often dwarf transport emissions. Other avenues to address the climate change impact of trade are more promising.

Demystifying food emissions

In the US, for example, food items travel more than 8,000 km on average before reaching the consumer. Yet transport only accounts for 11 per cent of total emissions with 83 per cent – mostly nitrous oxide (N2O) and methane (CH4) emissions – occurring at the production stage.

US Department of Agriculture data on energy use in the American food system echoes this finding, showing that processing, packaging, and selling of food represent ten times the energy used to transport food.

In practice, it may be preferable from an environmental perspective to consume lamb, onion or dairy products transported by sea because the lower emissions generated at the production stage offset those resulting from transport. Similarly, growing tomatoes under heated greenhouses in Sweden is often more emissions-intensive than importing open-grown ones from Southern Europe.

Seasonality also matters. British apples placed in storage for ten months leads to twice the level of emissions as that of South American apples sea-freighted to the UK. And the type of transport is also important as, overall, maritime transport generates 25 to 250 times less emissions than trucks, and air freight generates on average five times more emissions than road transport.

Therefore, air-freighted Kenyan beans have a much larger carbon footprint than those produced in the UK, but crossing Europe by truck to import Italian wine might generate more emissions than transatlantic shipments.

Finally, one should take into account the last leg of transport. A consumer driving more than 10 km to purchase 1 kg of fresh produce will generate proportionately more greenhouse gas (GHG) emissions than air-freighting 1 kg of produce from Kenya.

Shifting consumption towards local foods may reduce GHG emissions in sectors with relatively low emissions intensities but, when non-carbon dioxide emissions are taken into account, this is more often the exception than the rule.

Under these circumstances, preventing trade is an inefficient and expensive way of reducing GHG emissions. Bureau et al. for example, calculate that a global tariff maintaining the volume of trade at current levels until 2030 may reduce global carbon dioxide emissions by 3.5 per cent. However, this would be roughly seven times less than the full implementation of the Paris Agreement and cost equivalent to the current GDP of Brazil or 1.8 per cent of world GDP.

By preventing an efficient use of resources, such restrictions would also undermine the role of trade in offsetting possible climate-induced production shortfalls in some parts of the world and allowing people to access food when they can’t produce it themselves.

Reducing the climate footprint of trade

This is not to say that nothing should be done to tackle transport emissions. The OECD estimates that international trade-related freight accounted for over 5 per cent of total global fuel emissions with shipping representing roughly half of it, trucks 40 per cent, air 6 per cent and rail 2 per cent. With the projected tripling of freight transport by 2050, emissions from shipping are expected to rise between 50 and 250 per cent.

Furthermore, because of their international nature, these emissions are not covered by the Paris Agreement. Instead the two UN agencies regulating these sectors – the International Civil Aviation Organization and the International Maritime Organization – are responsible for reducing these emissions and, so far, significant progress has proven elusive.

Regional or bilateral free trade agreements to further stimulate trade could address this problem by exploiting comparative advantages. Impact assessments of those agreements often point towards increases in GHG emissions due to a boost in trade flows. In the future, such agreements could incorporate – or develop in parallel – initiatives to ensure carbon neutrality by connecting carbon markets among contracting parties or by taxing international maritime and air transport emissions.

Such initiatives could be combined with providing additional preferences in the form of enhanced market access to low-carbon food and healthier food. The EU, as one of the chief proponents of bilateral and regional trade agreements and a leader in promoting a transition to a low-carbon economy could champion such an approach.

This article is part of a series from the Chatham House Global Trade Policy Forum, designed to promote research and policy recommendations on the future of global trade. It is adapted from the research paper, Delivering Sustainable Food and Land Use Systems: The Role of International Trade, authored by Christophe Bellmann, Bernice Lee and Jonathan Hepburn.




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Christophe Bellmann

Associate Fellow, Hoffmann Centre for Sustainable Resource Economy

Biography

Christophe is a senior resident research associate at ICTSD with decades of experience working on international trade negotiations and policymaking from a sustainable development perspective.

He joined ICTSD in 1998 as programme officer for outreach and partnership, then became director of policy dialogues. Since 2002, he has been  programmes director.

He previously worked for the Swiss Coalition of Development Organisations (SCDO) where he was responsible for activities on multilateral trade and sustainable development issues, and has also worked as a research associate at the Economic Commission for Latin America and the Caribbean (ECLAC) in Santiago, Chile on the relationship between trade and the environment.

Christophe has edited and published a wide range of books, articles and opinion pieces in English, French and Spanish on trade and sustainable development. His work focuses on international trade negotiations, development policies and environmental governance in areas such as agriculture and food security, fisheries, tariffs and non-tariff barriers, rules, regional trade, services and intellectual property rights.

He holds an MA in international relations from the Graduate Institute for International Studies in Geneva.




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An older man with thoracic back pain




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Healthcare comes to standstill in east Aleppo as last hospitals are destroyed




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A musical about malignancy




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Lack of evidence for interventions offered in UK fertility centres




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Doctor alleged to have performed “designer vagina” surgery won’t be prosecuted




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RCP warns over shortage of stroke physicians




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Dyspnoea after home improvement work




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Overdiagnosis of thyroid cancer




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Preserving fertility in girls and young women with cancer




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Seven days in medicine: 23-29 November 2016




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Generics have a chequered recent history




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Low molecular weight heparin does not prevent VTE after knee arthroscopy, studies show




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Return of the “firm” gets cautious welcome




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Constitutional symptoms in a young person




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Anti-bullying programme is launched by orthopaedic trainees




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How to write an operation note




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NHS increases efforts to recruit doctors from overseas




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Government recognises contribution of EU workers to the NHS, says health minister




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Royal College of Surgeons launches postgraduate surgical certificate




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Choosing a core surgical training interview skills course




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Covid-19: Home testing programme across England aims to help define way out of lockdown




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Covid-19’s impact on US medical research—shifting money, easing rules




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Covid-19 is no worse in immunocompromised children, says NICE




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Covid-19: Coroners needn’t investigate PPE policy failures in deaths of NHS staff, new guidance says




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Covid-19: NHS bosses told to assess risk to ethnic minority staff who may be at greater risk




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Covid-19: GPs have a fortnight to start organising weekly care home reviews, says NHS




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Partha Kar: Covid-19 and ethnicity—why are all our angels white?




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Helen Salisbury: Message in a bottle




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Covid-19: UK advisory panel members are revealed after experts set up new group




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David Oliver: Is abuse towards doctors in government roles unfair?




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Patient perspective: Roger Boyes




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Emergency departments must not return to pre-covid days of overcrowding and lack of safety, says college




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Covid-19: Lack of capacity led to halting of community testing in March, admits deputy chief medical officer




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Self-protection: how NHS doctors are sourcing their own PPE




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Covid-19: the challenge of patient rehabilitation after intensive care




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Covid-19: UK death toll overtakes Italy’s to become worst in Europe




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Covid-19: Woman with terminal cancer should be released from care home to die with family, says judge




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Patient perspective: Gordon Sturmey and Matt Wiltshire




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Covid-19: Surviving the long road ahead




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Covid-19: Trump says added deaths are necessary price for reopening US businesses




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Proline-rich 11 (PRR11) drives F-actin assembly by recruiting the actin-related protein 2/3 complex in human non-small cell lung carcinoma [DNA and Chromosomes]

The actin cytoskeleton is extremely dynamic and supports diverse cellular functions in many physiological and pathological processes, including tumorigenesis. However, the mechanisms that regulate the actin-related protein 2/3 (ARP2/3) complex and thereby promote actin polymerization and organization in cancer cells are not well-understood. We previously implicated the proline-rich 11 (PRR11) protein in lung cancer development. In this study, using immunofluorescence staining, actin polymerization assays, and siRNA-mediated gene silencing, we uncovered that cytoplasmic PRR11 is involved in F-actin polymerization and organization. We found that dysregulation of PRR11 expression results in F-actin rearrangement and nuclear instability in non-small cell lung cancer cells. Results from molecular mechanistic experiments indicated that PRR11 associates with and recruits the ARP2/3 complex, facilitates F-actin polymerization, and thereby disrupts the F-actin cytoskeleton, leading to abnormal nuclear lamina assembly and chromatin reorganization. Inhibition of the ARP2/3 complex activity abolished irregular F-actin polymerization, lamina assembly, and chromatin reorganization due to PRR11 overexpression. Notably, experiments with truncated PRR11 variants revealed that PRR11 regulates F-actin through different regions. We found that deletion of either the N or C terminus of PRR11 abrogates its effects on F-actin polymerization and nuclear instability and that deletion of amino acid residues 100–184 or 100–200 strongly induces an F-actin structure called the actin comet tail, not observed with WT PRR11. Our findings indicate that cytoplasmic PRR11 plays an essential role in regulating F-actin assembly and nuclear stability by recruiting the ARP2/3 complex in human non-small cell lung carcinoma cells.




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Single-molecule level structural dynamics of DNA unwinding by human mitochondrial Twinkle helicase [Molecular Biophysics]

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.




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CRISPR-Cas12a has widespread off-target and dsDNA-nicking effects [DNA and Chromosomes]

Cas12a (Cpf1) is an RNA-guided endonuclease in the bacterial type V-A CRISPR-Cas anti-phage immune system that can be repurposed for genome editing. Cas12a can bind and cut dsDNA targets with high specificity in vivo, making it an ideal candidate for expanding the arsenal of enzymes used in precise genome editing. However, this reported high specificity contradicts Cas12a's natural role as an immune effector against rapidly evolving phages. Here, we employed high-throughput in vitro cleavage assays to determine and compare the native cleavage specificities and activities of three different natural Cas12a orthologs (FnCas12a, LbCas12a, and AsCas12a). Surprisingly, we observed pervasive sequence-specific nicking of randomized target libraries, with strong nicking of DNA sequences containing up to four mismatches in the Cas12a-targeted DNA-RNA hybrid sequences. We also found that these nicking and cleavage activities depend on mismatch type and position and vary with Cas12a ortholog and CRISPR RNA sequence. Our analysis further revealed robust nonspecific nicking of dsDNA when Cas12a is activated by binding to a target DNA. Together, our findings reveal that Cas12a has multiple nicking activities against dsDNA substrates and that these activities vary among different Cas12a orthologs.




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Impact of 1,N6-ethenoadenosine, a damaged ribonucleotide in DNA, on translesion synthesis and repair [Enzymology]

Incorporation of ribonucleotides into DNA can severely diminish genome integrity. However, how ribonucleotides instigate DNA damage is poorly understood. In DNA, they can promote replication stress and genomic instability and have been implicated in several diseases. We report here the impact of the ribonucleotide rATP and of its naturally occurring damaged analog 1,N6-ethenoadenosine (1,N6-ϵrA) on translesion synthesis (TLS), mediated by human DNA polymerase η (hpol η), and on RNase H2–mediated incision. Mass spectral analysis revealed that 1,N6-ϵrA in DNA generates extensive frameshifts during TLS, which can lead to genomic instability. Moreover, steady-state kinetic analysis of the TLS process indicated that deoxypurines (i.e. dATP and dGTP) are inserted predominantly opposite 1,N6-ϵrA. We also show that hpol η acts as a reverse transcriptase in the presence of damaged ribonucleotide 1,N6-ϵrA but has poor RNA primer extension activities. Steady-state kinetic analysis of reverse transcription and RNA primer extension showed that hpol η favors the addition of dATP and dGTP opposite 1,N6-ϵrA. We also found that RNase H2 recognizes 1,N6-ϵrA but has limited incision activity across from this lesion, which can lead to the persistence of this detrimental DNA adduct. We conclude that the damaged and unrepaired ribonucleotide 1,N6-ϵrA in DNA exhibits mutagenic potential and can also alter the reading frame in an mRNA transcript because 1,N6-ϵrA is incompletely incised by RNase H2.