science and technology Large-scale Identification of N-linked Intact Glycopeptides in Human Serum using HILIC Enrichment and Spectral Library Search By feedproxy.google.com Published On :: 2020-04-01 Qingbo ShuApr 1, 2020; 19:672-689Research Full Article
science and technology Selection of features with consistent profiles improves relative protein quantification in mass spectrometry experiments By feedproxy.google.com Published On :: 2020-03-31 Tsung-Heng TsaiMar 31, 2020; 0:RA119.001792v1-mcp.RA119.001792Research Full Article
science and technology Profiling Cell Signaling Networks at Single-cell Resolution By feedproxy.google.com Published On :: 2020-05-01 Xiao-Kang LunMay 1, 2020; 19:744-756Review Full Article
science and technology Quantitative Profiling of the Human Substantia Nigra Proteome from Laser-capture Microdissected FFPE Tissue By feedproxy.google.com Published On :: 2020-05-01 Eva GriesserMay 1, 2020; 19:839-851Research Full Article
science and technology DEqMS: a method for accurate variance estimation in differential protein expression analysis By feedproxy.google.com Published On :: 2020-03-23 Yafeng ZhuMar 23, 2020; 0:TIR119.001646v1-mcp.TIR119.001646Technological Innovation and Resources Full Article
science and technology Virtual Issue: Technological Innovations By feedproxy.google.com Published On :: 2020-04-01 Anne-Claude GingrasApr 1, 2020; 19:572-573Editorial Full Article
science and technology Compliance Checklists No Longer Required at Initial Manuscript Submission By feedproxy.google.com Published On :: 2020-04-01 Alma L. BurlingameApr 1, 2020; 19:571-571Editorial Full Article
science and technology Improving Identification of In-organello Protein-Protein Interactions Using an Affinity-enrichable, Isotopically Coded, and Mass Spectrometry-cleavable Chemical Crosslinker By feedproxy.google.com Published On :: 2020-04-01 Karl A. T. MakepeaceApr 1, 2020; 19:624-639Research Full Article
science and technology MaxQuant software for ion mobility enhanced shotgun proteomics By feedproxy.google.com Published On :: 2020-03-10 Nikita PrianichnikovMar 10, 2020; 0:TIR119.001720v1-mcp.TIR119.001720Technological Innovation and Resources Full Article
science and technology An Improved Boosting to Amplify Signal with Isobaric Labeling (iBASIL) Strategy for Precise Quantitative Single-cell Proteomics By feedproxy.google.com Published On :: 2020-05-01 Chia-Feng TsaiMay 1, 2020; 19:828-838Research Full Article
science and technology Acquiring and Analyzing Data Independent Acquisition Proteomics Experiments without Spectrum Libraries By feedproxy.google.com Published On :: 2020-04-20 Lindsay K PinoApr 20, 2020; 0:P119.001913v1-mcp.P119.001913Perspective Full Article
science and technology A Compact Quadrupole-Orbitrap Mass Spectrometer with FAIMS Interface Improves Proteome Coverage in Short LC Gradients By feedproxy.google.com Published On :: 2020-04-01 Dorte B. Bekker-JensenApr 1, 2020; 19:716-729Technological Innovation and Resources Full Article
science and technology Proximity Dependent Biotinylation: Key Enzymes and Adaptation to Proteomics Approaches By feedproxy.google.com Published On :: 2020-05-01 Payman Samavarchi-TehraniMay 1, 2020; 19:757-773Review Full Article
science and technology Microsoft delivers fixes for 110 bugs in April, 2020 Patch Tuesday By feedproxy.google.com Published On :: Tue, 14 Apr 2020 17:43:55 +0000 For the April edition of Patch Tuesday, Microsoft repaired a total of 110 security vulnerabilities across their product line. Included in this count are 37 remote code execution bugs, and 33 elevation of privilege bugs. The company rated eighteen of the vulnerabilities “Critical.” This release’s most notable item is the follow-up to last month’s announcement, […] Full Article SophosLabs Uncut Elevation of Privilege Exploits font Microsoft Patch Tuesday SharePoint updates vulnerability Windows
science and technology Rising to the challenge in the worst circumstances By feedproxy.google.com Published On :: Thu, 16 Apr 2020 14:28:47 +0000 In this era when we need to do everything possible to keep essential businesses operational, the people of the information security community have banded together in an inspirational effort to protect us all. Full Article Corporate coronavirus COVID-19 COVID-19 Cyber Threat Coalition CTI League Cyber Volunteers 19
science and technology XG Firewall is now available on AWS By feedproxy.google.com Published On :: Mon, 20 Apr 2020 15:47:21 +0000 We are extremely pleased to announce the availability of XG Firewall on Amazon Web Services (AWS) public cloud infrastructure. Full Article Network Amazon Web Services AWS XG Firewall XG Firewall v18
science and technology Following the money in a massive “sextortion” spam scheme By feedproxy.google.com Published On :: Wed, 22 Apr 2020 12:30:08 +0000 Cryptocurrency profits from sextortion spam funneled into wallets tied to other cybercrime and dark web market activity. Full Article SophosLabs Uncut
science and technology LockBit ransomware borrows tricks to keep up with REvil and Maze By feedproxy.google.com Published On :: Fri, 24 Apr 2020 13:03:38 +0000 Recently-adopted techniques advance LockBit to a major ransomware player...for now. Full Article SophosLabs Uncut data breach exfiltration I/O Completion Ports IOCP LockBit Ransomware UAC Bypass User Account Control
science and technology Protecting the Cloud: Securing Windows Virtual Desktop By feedproxy.google.com Published On :: Fri, 24 Apr 2020 13:17:04 +0000 How to deploy and secure your virtual desktops with Sophos Intercept X and Sophos XG Firewall Full Article Cloud Cloud Security Intercept X Microsoft Azure XG Firewall XG Firewall v18
science and technology “Asnarök” Trojan targets firewalls By feedproxy.google.com Published On :: Mon, 27 Apr 2020 01:26:19 +0000 Customized malware used to compromise physical and virtual firewalls Full Article SophosLabs Uncut Asnarok ELF Firewall malware shell script
science and technology How to remove unused devices from Sophos Central By feedproxy.google.com Published On :: Tue, 28 Apr 2020 18:17:03 +0000 We take you through the steps to clear your old devices from Sophos Central, so you've got more time to focus on the devices that matter. Full Article Corporate Security Tips SIEM SOAR Sophos Central Sophos Central API Sophos Security Team
science and technology Protecting the Cloud: Securing access to public cloud accounts By feedproxy.google.com Published On :: Tue, 05 May 2020 12:44:15 +0000 How Sophos Cloud Optix helps you secure access to your AWS, Azure and Google Cloud Platform accounts. Full Article Cloud Amazon Web Services AWS Azure Cloud Optix GCP Google cloud platform MFA Microsoft Azure public cloud
science and technology Protecting the Cloud: Securing user remote access to AWS By feedproxy.google.com Published On :: Thu, 07 May 2020 13:19:27 +0000 How to create secure access to services hosted in AWS with Sophos XG Firewall. Full Article Cloud AWS XG Firewall XG Firewall v18
science and technology Making the most of attending conferences By blogs.ams.org Published On :: Tue, 08 Oct 2019 16:54:02 +0000 In this blog by Julianne Vega, graduate student at University of Kentucky, Julianne tells us how to make the most of attending math conferences. If you are heading to a conference, challenge yourself! Your first conference may not be the … Continue reading → Full Article career advancement General Graduate School Uncategorized Undegraduates
science and technology Nice to Meet You By blogs.ams.org Published On :: Tue, 12 Nov 2019 20:49:54 +0000 Blog by Sean Hays Out of all racial demographics in the United States, single-race Native Americans have the highest poverty rate at 28.3% [1]. Basic needs can be hard to come by for some Native Americans, as 7.5% do not have … Continue reading → Full Article career advancement General Uncategorized Undegraduates
science and technology Mathematical light shines blindly on us By blogs.ams.org Published On :: Mon, 09 Dec 2019 18:57:58 +0000 By William Yslas Vélez Professor Emeritus University of Arizona “When I go to a Mexican restaurant I would gladly pay the musicians to stop playing.” John (not his real name) did not like the noise level. This statement came up … Continue reading → Full Article Changing Graduate Programs General Uncategorized
science and technology Gotta catch ’em all, URM! By blogs.ams.org Published On :: Thu, 19 Dec 2019 03:24:01 +0000 By Carrie Diaz Eaton and Pamela E. Harris We received the same email: Tuesday, Dec 17, 1:37 PM and Tuesday, Dec 17, 1:42 PM. No time to personalize the email. Simply change last names. After all, any one will do, … Continue reading → Full Article career advancement General Leadership Negotiating faculty / post doc positions Outreach postdocs Tenure Uncategorized
science and technology Bank of REU/Grad Fair Questions By blogs.ams.org Published On :: Fri, 24 Jan 2020 19:14:06 +0000 By Lucy Martinez and Eduardo Torres Davila We attended the Joint Math Meetings (JMM) conference in Denver to present our research from our work at the Mathematical Sciences Research Institute Undergraduate Program. At JMM, there was a fair of graduate … Continue reading → Full Article career advancement Changing Graduate Programs General Going to graduate school Graduate School Uncategorized Undegraduates
science and technology A New Type of Learning Community By blogs.ams.org Published On :: Wed, 05 Feb 2020 13:42:16 +0000 Setting high standards is expected from all educators. Yet, I think I may have taken this to an extreme in my 2019 spring senior seminar course in algebraic combinatorics. Students walked in to class, got a copy of the syllabus … Continue reading → Full Article career advancement General Journals and Publications Uncategorized Undegraduates
science and technology Dare To Share By blogs.ams.org Published On :: Sun, 08 Mar 2020 03:26:53 +0000 Guest blog by Professor Mohamed Omar It started as a dare between friends. Would you dare post a video of yourself doing math on YouTube, for the entire world to see? That was the seed of what has become a … Continue reading → Full Article General Going to graduate school Uncategorized
science and technology Finding belonging through mentorship By blogs.ams.org Published On :: Fri, 17 Apr 2020 19:45:03 +0000 Guest blog by Stephen McKean On my first day of college, I showed up an hour early to my very first class. The class was Math 2210, multivariable calculus. For some reason, I thought this was the highest math class … Continue reading → Full Article General Going to graduate school Graduate School Outreach Uncategorized Undegraduates
science and technology A mathematician’s mission statement By blogs.ams.org Published On :: Thu, 23 Apr 2020 18:58:29 +0000 By Pamela E. Harris and Julianne Vega Companies and organizations are driven by their mission statements. These mission statements provide a concrete summary of what they value and what they work to achieve. Take for example the following mission statements: … Continue reading → Full Article career advancement General Uncategorized
science and technology Learning During the Pandemic: What we wish our professors and mentors knew By blogs.ams.org Published On :: Tue, 05 May 2020 12:45:41 +0000 Student Authors: Mayleen Cortez, Brooke Keene-Gomez, Lucy Martinez, Amaury V. Miniño, Jenna Race, Kelemua Tesfaye, and Stephanie. Blog post compiled by Melissa Gutiérrez González, Pamela E. Harris, and Alicia Prieto Langarica. In this blog we center the voices of mathematics students as … Continue reading → Full Article career advancement General Going to graduate school graduation Uncategorized Undegraduates work life balance
science and technology Correction: Graph Algorithms for Condensing and Consolidating Gene Set Analysis Results. [Additions and Corrections] By feedproxy.google.com Published On :: 2020-02-01T00:05:30-08:00 Full Article
science and technology Combining Precursor and Fragment Information for Improved Detection of Differential Abundance in Data Independent Acquisition [Technological Innovation and Resources] By feedproxy.google.com Published On :: 2020-02-01T00:05:30-08:00 In bottom-up, label-free discovery proteomics, biological samples are acquired in a data-dependent (DDA) or data-independent (DIA) manner, with peptide signals recorded in an intact (MS1) and fragmented (MS2) form. While DDA has only the MS1 space for quantification, DIA contains both MS1 and MS2 at high quantitative quality. DIA profiles of complex biological matrices such as tissues or cells can contain quantitative interferences, and the interferences at the MS1 and the MS2 signals are often independent. When comparing biological conditions, the interferences can compromise the detection of differential peptide or protein abundance and lead to false positive or false negative conclusions. We hypothesized that the combined use of MS1 and MS2 quantitative signals could improve our ability to detect differentially abundant proteins. Therefore, we developed a statistical procedure incorporating both MS1 and MS2 quantitative information of DIA. We benchmarked the performance of the MS1-MS2-combined method to the individual use of MS1 or MS2 in DIA using four previously published controlled mixtures, as well as in two previously unpublished controlled mixtures. In the majority of the comparisons, the combined method outperformed the individual use of MS1 or MS2. This was particularly true for comparisons with low fold changes, few replicates, and situations where MS1 and MS2 were of similar quality. When applied to a previously unpublished investigation of lung cancer, the MS1-MS2-combined method increased the coverage of known activated pathways. Since recent technological developments continue to increase the quality of MS1 signals (e.g. using the BoxCar scan mode for Orbitrap instruments), the combination of the MS1 and MS2 information has a high potential for future statistical analysis of DIA data. Full Article
science and technology Thorough Performance Evaluation of 213 nm Ultraviolet Photodissociation for Top-down Proteomics [Technological Innovation and Resources] By feedproxy.google.com Published On :: 2020-02-01T00:05:30-08:00 Top-down proteomics studies intact proteoform mixtures and offers important advantages over more common bottom-up proteomics technologies, as it avoids the protein inference problem. However, achieving complete molecular characterization of investigated proteoforms using existing technologies remains a fundamental challenge for top-down proteomics. Here, we benchmark the performance of ultraviolet photodissociation (UVPD) using 213 nm photons generated by a solid-state laser applied to the study of intact proteoforms from three organisms. Notably, the described UVPD setup applies multiple laser pulses to induce ion dissociation, and this feature can be used to optimize the fragmentation outcome based on the molecular weight of the analyzed biomolecule. When applied to complex proteoform mixtures in high-throughput top-down proteomics, 213 nm UVPD demonstrated a high degree of complementarity with the most employed fragmentation method in proteomics studies, higher-energy collisional dissociation (HCD). UVPD at 213 nm offered higher average proteoform sequence coverage and degree of proteoform characterization (including localization of post-translational modifications) than HCD. However, previous studies have shown limitations in applying database search strategies developed for HCD fragmentation to UVPD spectra which contains up to nine fragment ion types. We therefore performed an analysis of the different UVPD product ion type frequencies. From these data, we developed an ad hoc fragment matching strategy and determined the influence of each possible ion type on search outcomes. By paring down the number of ion types considered in high-throughput UVPD searches from all types down to the four most abundant, we were ultimately able to achieve deeper proteome characterization with UVPD. Lastly, our detailed product ion analysis also revealed UVPD cleavage propensities and determined the presence of a product ion produced specifically by 213 nm photons. All together, these observations could be used to better elucidate UVPD dissociation mechanisms and improve the utility of the technique for proteomic applications. Full Article
science and technology Mass Spectrometry Based Immunopeptidomics Leads to Robust Predictions of Phosphorylated HLA Class I Ligands [Technological Innovation and Resources] By feedproxy.google.com Published On :: 2020-02-01T00:05:30-08:00 The presentation of peptides on class I human leukocyte antigen (HLA-I) molecules plays a central role in immune recognition of infected or malignant cells. In cancer, non-self HLA-I ligands can arise from many different alterations, including non-synonymous mutations, gene fusion, cancer-specific alternative mRNA splicing or aberrant post-translational modifications. Identifying HLA-I ligands remains a challenging task that requires either heavy experimental work for in vivo identification or optimized bioinformatics tools for accurate predictions. To date, no HLA-I ligand predictor includes post-translational modifications. To fill this gap, we curated phosphorylated HLA-I ligands from several immunopeptidomics studies (including six newly measured samples) covering 72 HLA-I alleles and retrieved a total of 2,066 unique phosphorylated peptides. We then expanded our motif deconvolution tool to identify precise binding motifs of phosphorylated HLA-I ligands. Our results reveal a clear enrichment of phosphorylated peptides among HLA-C ligands and demonstrate a prevalent role of both HLA-I motifs and kinase motifs on the presentation of phosphorylated peptides. These data further enabled us to develop and validate the first predictor of interactions between HLA-I molecules and phosphorylated peptides. Full Article
science and technology Upregulation of CD73 Confers Acquired Radioresistance and is Required for Maintaining Irradiation-selected Pancreatic Cancer Cells in a Mesenchymal State [Research] By feedproxy.google.com Published On :: 2020-02-01T00:05:30-08:00 The molecular mechanisms underlying exceptional radioresistance in pancreatic cancer remain elusive. In the present study, we established a stable radioresistant pancreatic cancer cell line MIA PaCa-2-R by exposing the parental MIA PaCa-2 cells to fractionated ionizing radiation (IR). Systematic proteomics and bioinformatics analysis of protein expression in MIA PaCa-2 and MIA PaCa-2-R cells revealed that several growth factor-/cytokine-mediated pathways, including the OSM/STAT3, PI3K/AKT, and MAPK/ERK pathways, were activated in the radioresistant cells, leading to inhibition of apoptosis and increased epithelial-mesenchymal plasticity. In addition, the radioresistant cells exhibited enhanced capabilities of DNA repair and antioxidant defense compared with the parental cells. We focused functional analysis on one of the most up-regulated proteins in the radioresistant cells, ecto-5'-nucleotidase (CD73), which is a cell surface protein that is overexpressed in different types of cancer. Ectopic overexpression of CD73 in the parental cells resulted in radioresistance and conferred resistance to IR-induced apoptosis. Knockdown of CD73 re-sensitized the radioresistant cells to IR and IR-induced apoptosis. The effect of CD73 on radioresistance and apoptosis is independent of the enzymatic activity of CD73. Further studies demonstrate that CD73 up-regulation promotes Ser-136 phosphorylation of the proapoptotic protein BAD and is required for maintaining the radioresistant cells in a mesenchymal state. Our findings suggest that expression alterations in the IR-selected pancreatic cancer cells result in hyperactivation of the growth factor/cytokine signaling that promotes epithelial-mesenchymal plasticity and enhancement of DNA repair. Our results also suggest that CD73, potentially a novel downstream factor of the enhanced growth factor/cytokine signaling, confers acquired radioresistance by inactivating proapoptotic protein BAD via phosphorylation of BAD at Ser-136 and by maintaining the radioresistant pancreatic cancer cells in a mesenchymal state. Full Article
science and technology Site-specific N-glycan Analysis of Antibody-binding Fc {gamma} Receptors from Primary Human Monocytes [Research] By feedproxy.google.com Published On :: 2020-02-01T00:05:30-08:00 FcRIIIa (CD16a) and FcRIIa (CD32a) on monocytes are essential for proper effector functions including antibody dependent cellular cytotoxicity (ADCC) and phagocytosis (ADCP). Indeed, therapeutic monoclonal antibodies (mAbs) that bind FcRs with greater affinity exhibit greater efficacy. Furthermore, post-translational modification impacts antibody binding affinity, most notably the composition of the asparagine(N)-linked glycan at N162 of CD16a. CD16a is widely recognized as the key receptor for the monocyte response, however the post-translational modifications of CD16a from endogenous monocytes are not described. Here we isolated monocytes from individual donors and characterized the composition of CD16a and CD32a N-glycans from all modified sites. The composition of CD16a N-glycans varied by glycosylation site and donor. CD16a displayed primarily complex-type biantennary N-glycans at N162, however some individuals expressed CD16a V158 with ~20% hybrid and oligomannose types which increased affinity for IgG1 Fc according to surface plasmon resonance binding analyses. The CD16a N45-glycans contain markedly less processing than other sites with >75% hybrid and oligomannose forms. N38 and N74 of CD16a both contain highly processed complex-type N-glycans with N-acetyllactosamine repeats and complex-type biantennary N-glycans dominate at N169. The composition of CD16a N-glycans isolated from monocytes included a higher proportion of oligomannose-type N-glycans at N45 and less sialylation plus greater branch fucosylation than we observed in a recent analysis of NK cell CD16a. The additional analysis of CD32a from monocytes revealed different features than observed for CD16a including the presence of a predominantly biantennary complex-type N-glycans with two sialic acids at both sites (N64 and N145). Full Article
science and technology Blistering1 Modulates Penicillium expansum Virulence Via Vesicle-mediated Protein Secretion [Research] By feedproxy.google.com Published On :: 2020-02-01T00:05:30-08:00 The blue mold fungus, Penicillium expansum, is a postharvest apple pathogen that contributes to food waste by rotting fruit and by producing harmful mycotoxins (e.g. patulin). To identify genes controlling pathogen virulence, a random T-DNA insertional library was created from wild-type P. expansum strain R19. One transformant, T625, had reduced virulence in apples, blistered mycelial hyphae, and a T-DNA insertion that abolished transcription of the single copy locus in which it was inserted. The gene, Blistering1, encodes a protein with a DnaJ domain, but otherwise has little homology outside the Aspergillaceae, a family of fungi known for producing antibiotics, mycotoxins, and cheese. Because protein secretion is critical for these processes and for host infection, mass spectrometry was used to monitor proteins secreted into liquid media during fungal growth. T625 failed to secrete a set of enzymes that degrade plant cell walls, along with ones that synthesize the three final biosynthetic steps of patulin. Consequently, the culture broth of T625 had significantly reduced capacity to degrade apple tissue and contained 30 times less patulin. Quantitative mass spectrometry of 3,282 mycelial proteins revealed that T625 had altered cellular networks controlling protein processing in the endoplasmic reticulum, protein export, vesicle-mediated transport, and endocytosis. T625 also had reduced proteins controlling mRNA surveillance and RNA processing. Transmission electron microscopy of hyphal cross sections confirmed that T625 formed abnormally enlarged endosomes or vacuoles. These data reveal that Blistering1 affects internal and external protein processing involving vesicle-mediated transport in a family of fungi with medical, commercial, and agricultural importance. Full Article
science and technology Molecular Basis of the Mechanisms Controlling MASTL [Research] By feedproxy.google.com Published On :: 2020-02-01T00:05:30-08:00 The human MASTL (Microtubule-associated serine/threonine kinase-like) gene encodes an essential protein in the cell cycle. MASTL is a key factor preventing early dephosphorylation of M-phase targets of Cdk1/CycB. Little is known about the mechanism of MASTL activation and regulation. MASTL contains a non-conserved insertion of 550 residues within its activation loop, splitting the kinase domain, and making it unique. Here, we show that this non-conserved middle region (NCMR) of the protein is crucial for target specificity and activity. We performed a phosphoproteomic assay with different MASTL constructs identifying key phosphorylation sites for its activation and determining whether they arise from autophosphorylation or exogenous kinases, thus generating an activation model. Hydrogen/deuterium exchange data complements this analysis revealing that the C-lobe in full-length MASTL forms a stable structure, whereas the N-lobe is dynamic and the NCMR and C-tail contain few localized regions with higher-order structure. Our results indicate that truncated versions of MASTL conserving a cryptic C-Lobe in the NCMR, display catalytic activity and different targets, thus establishing a possible link with truncated mutations observed in cancer-related databases. Full Article
science and technology Multi-omic Characterization of the Mode of Action of a Potent New Antimalarial Compound, JPC-3210, Against Plasmodium falciparum [Research] By feedproxy.google.com Published On :: 2020-02-01T00:05:30-08:00 The increasing incidence of antimalarial drug resistance to the first-line artemisinin combination therapies underpins an urgent need for new antimalarial drugs, ideally with a novel mode of action. The recently developed 2-aminomethylphenol, JPC-3210, (MMV 892646) is an erythrocytic schizonticide with potent in vitro antimalarial activity against multidrug-resistant Plasmodium falciparum lines, low cytotoxicity, potent in vivo efficacy against murine malaria, and favorable preclinical pharmacokinetics including a lengthy plasma elimination half-life. To investigate the impact of JPC-3210 on biochemical pathways within P. falciparum-infected red blood cells, we have applied a "multi-omics" workflow based on high resolution orbitrap mass spectrometry combined with biochemical approaches. Metabolomics, peptidomics and hemoglobin fractionation analyses revealed a perturbation in hemoglobin metabolism following JPC-3210 exposure. The metabolomics data demonstrated a specific depletion of short hemoglobin-derived peptides, peptidomics analysis revealed a depletion of longer hemoglobin-derived peptides, and the hemoglobin fractionation assay demonstrated decreases in hemoglobin, heme and hemozoin levels. To further elucidate the mechanism responsible for inhibition of hemoglobin metabolism, we used in vitro β-hematin polymerization assays and showed JPC-3210 to be an intermediate inhibitor of β-hematin polymerization, about 10-fold less potent then the quinoline antimalarials, such as chloroquine and mefloquine. Further, quantitative proteomics analysis showed that JPC-3210 treatment results in a distinct proteomic signature compared with other known antimalarials. While JPC-3210 clustered closely with mefloquine in the metabolomics and proteomics analyses, a key differentiating signature for JPC-3210 was the significant enrichment of parasite proteins involved in regulation of translation. These studies revealed that the mode of action for JPC-3210 involves inhibition of the hemoglobin digestion pathway and elevation of regulators of protein translation. Importantly, JPC-3210 demonstrated rapid parasite killing kinetics compared with other quinolones, suggesting that JPC-3210 warrants further investigation as a potentially long acting partner drug for malaria treatment. Full Article
science and technology Profiling the Surfaceome Identifies Therapeutic Targets for Cells with Hyperactive mTORC1 Signaling [Research] By feedproxy.google.com Published On :: 2020-02-01T00:05:30-08:00 Aberrantly high mTORC1 signaling is a known driver of many cancers and human disorders, yet pharmacological inhibition of mTORC1 rarely confers durable clinical responses. To explore alternative therapeutic strategies, herein we conducted a proteomics survey to identify cell surface proteins upregulated by mTORC1. A comparison of the surfaceome from Tsc1–/– versus Tsc1+/+ mouse embryonic fibroblasts revealed 59 proteins predicted to be significantly overexpressed in Tsc1–/– cells. Further validation of the data in multiple mouse and human cell lines showed that mTORC1 signaling most dramatically induced the expression of the proteases neprilysin (NEP/CD10) and aminopeptidase N (APN/CD13). Functional studies showed that constitutive mTORC1 signaling sensitized cells to genetic ablation of NEP and APN, as well as the biochemical inhibition of APN. In summary, these data show that mTORC1 signaling plays a significant role in the constitution of the surfaceome, which in turn may present novel therapeutic strategies. Full Article
science and technology Deep Characterization of the Human Antibody Response to Natural Infection Using Longitudinal Immune Repertoire Sequencing [Research] By feedproxy.google.com Published On :: 2020-02-01T00:05:30-08:00 Human antibody response studies are largely restricted to periods of high immune activity (e.g. vaccination). To comprehensively understand the healthy B cell immune repertoire and how this changes over time and through natural infection, we conducted immune repertoire RNA sequencing on flow cytometry-sorted B cell subsets to profile a single individual's antibodies over 11 months through two periods of natural viral infection. We found that 1) a baseline of healthy variable (V) gene usage in antibodies exists and is stable over time, but antibodies in memory cells consistently have a different usage profile relative to earlier B cell stages; 2) a single complementarity-determining region 3 (CDR3) is potentially generated from more than one VJ gene combination; and 3) IgG and IgA antibody transcripts are found at low levels in early human B cell development, suggesting that class switching may occur earlier than previously realized. These findings provide insight into immune repertoire stability, response to natural infections, and human B cell development. Full Article
science and technology Combined EGFR and ROCK Inhibition in Triple-negative Breast Cancer Leads to Cell Death Via Impaired Autophagic Flux [Research] By feedproxy.google.com Published On :: 2020-02-01T00:05:30-08:00 Triple-negative breast cancer (TNBC) is an aggressive subtype of breast cancer with very limited therapeutic options. We have recently shown that the combined inhibition of EGFR and ROCK in TNBC cells results in cell death, however, the underlying mechanisms remain unclear. To investigate this, here we applied a mass spectrometry-based proteomic approach to identify proteins altered on single and combination treatments. Our proteomic data revealed autophagy as the major molecular mechanism implicated in the cells' response to combinatorial treatment. We here show that EGFR inhibition by gefitinib treatment alone induces autophagy, a cellular recycling process that acts as a cytoprotective response for TNBC cells. However, combined inhibition of EGFR and ROCK leads to autophagy blockade and accumulation of autophagic vacuoles. Our data show impaired autophagosome clearance as a likely cause of antitumor activity. We propose that the inhibition of the autophagic flux on combinatorial treatment is attributed to the major cytoskeletal changes induced on ROCK inhibition, given the essential role the cytoskeleton plays throughout the various steps of the autophagy process. Full Article
science and technology Interaction Proteomics Identifies ERbeta Association with Chromatin Repressive Complexes to Inhibit Cholesterol Biosynthesis and Exert An Oncosuppressive Role in Triple-negative Breast Cancer [Research] By feedproxy.google.com Published On :: 2020-02-01T00:05:29-08:00 Triple-negative breast cancer (TNBC) is characterized by poor response to therapy and low overall patient survival. Recently, Estrogen Receptor beta (ERβ) has been found to be expressed in a fraction of TNBCs where, because of its oncosuppressive actions on the genome, it represents a potential therapeutic target, provided a better understanding of its actions in these tumors becomes available. To this end, the cell lines Hs 578T, MDA-MB-468 and HCC1806, representing the claudin-low, basal-like 1 and 2 TNBC molecular subtypes respectively, were engineered to express ERβ under the control of a Tetracycline-inducible promoter and used to investigate the effects of this transcription factor on gene activity. The antiproliferative effects of ERβ in these cells were confirmed by multiple functional approaches, including transcriptome profiling and global mapping of receptor binding sites in the genome, that revealed direct negative regulation by ERβ of genes, encoding for key components of cellular pathways associated to TNBC aggressiveness representing novel therapeutic targets such as angiogenesis, invasion, metastasis and cholesterol biosynthesis. Supporting these results, interaction proteomics by immunoprecipitation coupled to nano LC-MS/MS mass spectrometry revealed ERβ association with several potential nuclear protein partners, including key components of regulatory complexes known to control chromatin remodeling, transcriptional and post-transcriptional gene regulation and RNA splicing. Among these, ERβ association with the Polycomb Repressor Complexes 1 and 2 (PRC1/2), known for their central role in gene regulation in cancer cells, was confirmed in all three TNBC subtypes investigated, suggesting its occurrence independently from the cellular context. These results demonstrate a significant impact of ERβ in TNBC genome activity mediated by its cooperation with regulatory multiprotein chromatin remodeling complexes, providing novel ground to devise new strategies for the treatment of these diseases based on ligands affecting the activity of this nuclear receptor or some of its protein partners. Full Article
science and technology Phosphoproteomic Approaches to Discover Novel Substrates of Mycobacterial Ser/Thr Protein Kinases [Reviews] By feedproxy.google.com Published On :: 2020-02-01T00:05:29-08:00 Mycobacterial Ser/Thr protein kinases (STPKs) play a critical role in signal transduction pathways that ultimately determine mycobacterial growth and metabolic adaptation. Identification of key physiological substrates of these protein kinases is, therefore, crucial to better understand how Ser/Thr phosphorylation contributes to mycobacterial environmental adaptation, including response to stress, cell division, and host-pathogen interactions. Various substrate detection methods have been employed with limited success, with direct targets of STPKs remaining elusive. Recently developed mass spectrometry (MS)-based phosphoproteomic approaches have expanded the list of potential STPK substrate identifications, yet further investigation is required to define the most functionally significant phosphosites and their physiological importance. Prior to the application of MS workflows, for instance, GarA was the only known and validated physiological substrate for protein kinase G (PknG) from pathogenic mycobacteria. A subsequent list of at least 28 candidate PknG substrates has since been reported with the use of MS-based analyses. Herein, we integrate and critically review MS-generated datasets available on novel STPK substrates and report new functional and subcellular localization enrichment analyses on novel candidate protein kinase A (PknA), protein kinase B (PknB) and PknG substrates to deduce the possible physiological roles of these kinases. In addition, we assess substrate specificity patterns across different mycobacterial STPKs by analyzing reported sets of phosphopeptides, in order to determine whether novel motifs or consensus regions exist for mycobacterial Ser/Thr phosphorylation sites. This review focuses on MS-based techniques employed for STPK substrate identification in mycobacteria, while highlighting the advantages and challenges of the various applications. Full Article
science and technology Advances in Tools to Determine the Glycan-Binding Specificities of Lectins and Antibodies [Reviews] By feedproxy.google.com Published On :: 2020-02-01T00:05:29-08:00 Proteins that bind carbohydrate structures can serve as tools to quantify or localize specific glycans in biological specimens. Such proteins, including lectins and glycan-binding antibodies, are particularly valuable if accurate information is available about the glycans that a protein binds. Glycan arrays have been transformational for uncovering rich information about the nuances and complexities of glycan-binding specificity. A challenge, however, has been the analysis of the data. Because protein-glycan interactions are so complex, simplistic modes of analyzing the data and describing glycan-binding specificities have proven inadequate in many cases. This review surveys the methods for handling high-content data on protein-glycan interactions. We contrast the approaches that have been demonstrated and provide an overview of the resources that are available. We also give an outlook on the promising experimental technologies for generating new insights into protein-glycan interactions, as well as a perspective on the limitations that currently face the field. Full Article
science and technology MaXLinker: Proteome-wide Cross-link Identifications with High Specificity and Sensitivity [Technological Innovation and Resources] By feedproxy.google.com Published On :: 2020-03-01T00:05:26-08:00 Protein-protein interactions play a vital role in nearly all cellular functions. Hence, understanding their interaction patterns and three-dimensional structural conformations can provide crucial insights about various biological processes and underlying molecular mechanisms for many disease phenotypes. Cross-linking mass spectrometry (XL-MS) has the unique capability to detect protein-protein interactions at a large scale along with spatial constraints between interaction partners. The inception of MS-cleavable cross-linkers enabled the MS2-MS3 XL-MS acquisition strategy that provides cross-link information from both MS2 and MS3 level. However, the current cross-link search algorithm available for MS2-MS3 strategy follows a "MS2-centric" approach and suffers from a high rate of mis-identified cross-links. We demonstrate the problem using two new quality assessment metrics ["fraction of mis-identifications" (FMI) and "fraction of interprotein cross-links from known interactions" (FKI)]. We then address this problem, by designing a novel "MS3-centric" approach for cross-link identification and implementing it as a search engine named MaXLinker. MaXLinker outperforms the currently popular search engine with a lower mis-identification rate, and higher sensitivity and specificity. Moreover, we performed human proteome-wide cross-linking mass spectrometry using K562 cells. Employing MaXLinker, we identified a comprehensive set of 9319 unique cross-links at 1% false discovery rate, comprising 8051 intraprotein and 1268 interprotein cross-links. Finally, we experimentally validated the quality of a large number of novel interactions identified in our study, providing a conclusive evidence for MaXLinker's robust performance. Full Article
science and technology Concentration Determination of >200 Proteins in Dried Blood Spots for Biomarker Discovery and Validation [Technological Innovation and Resources] By feedproxy.google.com Published On :: 2020-03-01T00:05:26-08:00 The use of protein biomarkers as surrogates for clinical endpoints requires extensive multilevel validation including development of robust and sensitive assays for precise measurement of protein concentration. Multiple reaction monitoring (MRM) is a well-established mass-spectrometric method that can be used for reproducible protein-concentration measurements in biological specimens collected via microsampling. The dried blood spot (DBS) microsampling technique can be performed non-invasively without the expertise of a phlebotomist, and can enhance analyte stability which facilitate the application of this technique in retrospective studies while providing lower storage and shipping costs, because cold-chain logistics can be eliminated. Thus, precise, sensitive, and multiplexed methods for measuring protein concentrations in DBSs can be used for de novo biomarker discovery and for biomarker quantification or verification experiments. To achieve this goal, MRM assays were developed for multiplexed concentration measurement of proteins in DBSs. The lower limit of quantification (LLOQ) was found to have a median total coefficient of variation (CV) of 18% for 245 proteins, whereas the median LLOQ was 5 fmol of peptide injected on column, and the median inter-day CV over 4 days for measuring endogenous protein concentration was 8%. The majority (88%) of the assays displayed parallelism, whereas the peptide standards remained stable throughout the assay workflow and after exposure to multiple freeze-thaw cycles. For 190 proteins, the measured protein concentrations remained stable in DBS stored at ambient laboratory temperature for up to 2 months. Finally, the developed assays were used to measure the concentration ranges for 200 proteins in twenty same sex, same race and age matched individuals. Full Article