2461. Travel Less. Make It Worthwhile.
Academic travel has a substantial carbon footprint. The ongoing pandemic has propelled the development and adoption of technologies for online delivery of seminars and remote attendance at scientific conferences. This should not lead to the complete elimination of in-person events, but the scientific community must seize the opportunity to permanently change its modus operandi and reduce the impact of its activities on the environment.
2462. SnapShot: FABP Functions.
Fatty acid binding proteins (FABPs) serve as intracellular chaperones for fatty acids and other hydrophobic ligands inside cells. Recent studies have demonstrated new functions of individual members of the FABP family. This Snapshot describes the overall functions of FABPs in health and disease and highlights emerging roles of adipose FABP (A-FABP) and epidermal FABP (E-FABP) in the fields of obesity, chronic inflammation, and cancer development. To view this SnapShot, open or download the PDF.
2463. High-Resolution mRNA and Secretome Atlas of Human Enteroendocrine Cells.
作者: Joep Beumer.;Jens Puschhof.;Julia Bauzá-Martinez.;Adriana Martínez-Silgado.;Rasa Elmentaite.;Kylie R James.;Alexander Ross.;Delilah Hendriks.;Benedetta Artegiani.;Georg A Busslinger.;Bas Ponsioen.;Amanda Andersson-Rolf.;Aurelia Saftien.;Charelle Boot.;Kai Kretzschmar.;Maarten H Geurts.;Yotam E Bar-Ephraim.;Cayetano Pleguezuelos-Manzano.;Yorick Post.;Harry Begthel.;Franka van der Linden.;Carmen Lopez-Iglesias.;Willine J van de Wetering.;Reinier van der Linden.;Peter J Peters.;Albert J R Heck.;Joachim Goedhart.;Hugo Snippert.;Matthias Zilbauer.;Sarah A Teichmann.;Wei Wu.;Hans Clevers.
来源: Cell. 2020年182卷4期1062-1064页 2464. A Human IgSF Cell-Surface Interactome Reveals a Complex Network of Protein-Protein Interactions.
作者: Woj M Wojtowicz.;Jost Vielmetter.;Ricardo A Fernandes.;Dirk H Siepe.;Catharine L Eastman.;Gregory B Chisholm.;Sarah Cox.;Heath Klock.;Paul W Anderson.;Sarah M Rue.;Jessica J Miller.;Scott M Glaser.;Melisa L Bragstad.;Julie Vance.;Annie W Lam.;Scott A Lesley.;Kai Zinn.;K Christopher Garcia.
来源: Cell. 2020年182卷4期1027-1043.e17页
Cell-surface protein-protein interactions (PPIs) mediate cell-cell communication, recognition, and responses. We executed an interactome screen of 564 human cell-surface and secreted proteins, most of which are immunoglobulin superfamily (IgSF) proteins, using a high-throughput, automated ELISA-based screening platform employing a pooled-protein strategy to test all 318,096 PPI combinations. Screen results, augmented by phylogenetic homology analysis, revealed ∼380 previously unreported PPIs. We validated a subset using surface plasmon resonance and cell binding assays. Observed PPIs reveal a large and complex network of interactions both within and across biological systems. We identified new PPIs for receptors with well-characterized ligands and binding partners for "orphan" receptors. New PPIs include proteins expressed on multiple cell types and involved in diverse processes including immune and nervous system development and function, differentiation/proliferation, metabolism, vascularization, and reproduction. These PPIs provide a resource for further biological investigation into their functional relevance and may offer new therapeutic drug targets.
2465. IL4I1 Is a Metabolic Immune Checkpoint that Activates the AHR and Promotes Tumor Progression.
作者: Ahmed Sadik.;Luis F Somarribas Patterson.;Selcen Öztürk.;Soumya R Mohapatra.;Verena Panitz.;Philipp F Secker.;Pauline Pfänder.;Stefanie Loth.;Heba Salem.;Mirja Tamara Prentzell.;Bianca Berdel.;Murat Iskar.;Erik Faessler.;Friederike Reuter.;Isabelle Kirst.;Verena Kalter.;Kathrin I Foerster.;Evelyn Jäger.;Carina Ramallo Guevara.;Mansour Sobeh.;Thomas Hielscher.;Gernot Poschet.;Annekathrin Reinhardt.;Jessica C Hassel.;Marc Zapatka.;Udo Hahn.;Andreas von Deimling.;Carsten Hopf.;Rita Schlichting.;Beate I Escher.;Jürgen Burhenne.;Walter E Haefeli.;Naveed Ishaque.;Alexander Böhme.;Sascha Schäuble.;Kathrin Thedieck.;Saskia Trump.;Martina Seiffert.;Christiane A Opitz.
来源: Cell. 2020年182卷5期1252-1270.e34页
Aryl hydrocarbon receptor (AHR) activation by tryptophan (Trp) catabolites enhances tumor malignancy and suppresses anti-tumor immunity. The context specificity of AHR target genes has so far impeded systematic investigation of AHR activity and its upstream enzymes across human cancers. A pan-tissue AHR signature, derived by natural language processing, revealed that across 32 tumor entities, interleukin-4-induced-1 (IL4I1) associates more frequently with AHR activity than IDO1 or TDO2, hitherto recognized as the main Trp-catabolic enzymes. IL4I1 activates the AHR through the generation of indole metabolites and kynurenic acid. It associates with reduced survival in glioma patients, promotes cancer cell motility, and suppresses adaptive immunity, thereby enhancing the progression of chronic lymphocytic leukemia (CLL) in mice. Immune checkpoint blockade (ICB) induces IDO1 and IL4I1. As IDO1 inhibitors do not block IL4I1, IL4I1 may explain the failure of clinical studies combining ICB with IDO1 inhibition. Taken together, IL4I1 blockade opens new avenues for cancer therapy.
2466. An ESCRT-III Polymerization Sequence Drives Membrane Deformation and Fission.
作者: Anna-Katharina Pfitzner.;Vincent Mercier.;Xiuyun Jiang.;Joachim Moser von Filseck.;Buzz Baum.;Anđela Šarić.;Aurélien Roux.
来源: Cell. 2020年182卷5期1140-1155.e18页
The endosomal sorting complex required for transport-III (ESCRT-III) catalyzes membrane fission from within membrane necks, a process that is essential for many cellular functions, from cell division to lysosome degradation and autophagy. How it breaks membranes, though, remains unknown. Here, we characterize a sequential polymerization of ESCRT-III subunits that, driven by a recruitment cascade and by continuous subunit-turnover powered by the ATPase Vps4, induces membrane deformation and fission. During this process, the exchange of Vps24 for Did2 induces a tilt in the polymer-membrane interface, which triggers transition from flat spiral polymers to helical filament to drive the formation of membrane protrusions, and ends with the formation of a highly constricted Did2-Ist1 co-polymer that we show is competent to promote fission when bound on the inside of membrane necks. Overall, our results suggest a mechanism of stepwise changes in ESCRT-III filament structure and mechanical properties via exchange of the filament subunits to catalyze ESCRT-III activity.
2467. Large-Scale Comparative Analyses of Tick Genomes Elucidate Their Genetic Diversity and Vector Capacities.
作者: Na Jia.;Jinfeng Wang.;Wenqiang Shi.;Lifeng Du.;Yi Sun.;Wei Zhan.;Jia-Fu Jiang.;Qian Wang.;Bing Zhang.;Peifeng Ji.;Lesley Bell-Sakyi.;Xiao-Ming Cui.;Ting-Ting Yuan.;Bao-Gui Jiang.;Wei-Fei Yang.;Tommy Tsan-Yuk Lam.;Qiao-Cheng Chang.;Shu-Jun Ding.;Xian-Jun Wang.;Jin-Guo Zhu.;Xiang-Dong Ruan.;Lin Zhao.;Jia-Te Wei.;Run-Ze Ye.;Teng Cheng Que.;Chun-Hong Du.;Yu-Hao Zhou.;Jing Xia Cheng.;Pei-Fang Dai.;Wen-Bin Guo.;Xiao-Hu Han.;En-Jiong Huang.;Lian-Feng Li.;Wei Wei.;Yu-Chi Gao.;Jing-Ze Liu.;Hong-Ze Shao.;Xin Wang.;Chong-Cai Wang.;Tian-Ci Yang.;Qiu-Bo Huo.;Wei Li.;Hai-Ying Chen.;Shen-En Chen.;Ling-Guo Zhou.;Xue-Bing Ni.;Jun-Hua Tian.;Yue Sheng.;Tao Liu.;Yu-Sheng Pan.;Luo-Yuan Xia.;Jie Li.; .;Fangqing Zhao.;Wu-Chun Cao.
来源: Cell. 2020年182卷5期1328-1340.e13页
Among arthropod vectors, ticks transmit the most diverse human and animal pathogens, leading to an increasing number of new challenges worldwide. Here we sequenced and assembled high-quality genomes of six ixodid tick species and further resequenced 678 tick specimens to understand three key aspects of ticks: genetic diversity, population structure, and pathogen distribution. We explored the genetic basis common to ticks, including heme and hemoglobin digestion, iron metabolism, and reactive oxygen species, and unveiled for the first time that genetic structure and pathogen composition in different tick species are mainly shaped by ecological and geographic factors. We further identified species-specific determinants associated with different host ranges, life cycles, and distributions. The findings of this study are an invaluable resource for research and control of ticks and tick-borne diseases.
2468. Elevated Calprotectin and Abnormal Myeloid Cell Subsets Discriminate Severe from Mild COVID-19.
作者: Aymeric Silvin.;Nicolas Chapuis.;Garett Dunsmore.;Anne-Gaëlle Goubet.;Agathe Dubuisson.;Lisa Derosa.;Carole Almire.;Clémence Hénon.;Olivier Kosmider.;Nathalie Droin.;Philippe Rameau.;Cyril Catelain.;Alexia Alfaro.;Charles Dussiau.;Chloé Friedrich.;Elise Sourdeau.;Nathalie Marin.;Tali-Anne Szwebel.;Delphine Cantin.;Luc Mouthon.;Didier Borderie.;Marc Deloger.;Delphine Bredel.;Severine Mouraud.;Damien Drubay.;Muriel Andrieu.;Anne-Sophie Lhonneur.;Véronique Saada.;Annabelle Stoclin.;Christophe Willekens.;Fanny Pommeret.;Frank Griscelli.;Lai Guan Ng.;Zheng Zhang.;Pierre Bost.;Ido Amit.;Fabrice Barlesi.;Aurélien Marabelle.;Frédéric Pène.;Bertrand Gachot.;Fabrice André.;Laurence Zitvogel.;Florent Ginhoux.;Michaela Fontenay.;Eric Solary.
来源: Cell. 2020年182卷6期1401-1418.e18页
Blood myeloid cells are known to be dysregulated in coronavirus disease 2019 (COVID-19), caused by SARS-CoV-2. It is unknown whether the innate myeloid response differs with disease severity and whether markers of innate immunity discriminate high-risk patients. Thus, we performed high-dimensional flow cytometry and single-cell RNA sequencing of COVID-19 patient peripheral blood cells and detected disappearance of non-classical CD14LowCD16High monocytes, accumulation of HLA-DRLow classical monocytes (Human Leukocyte Antigen - DR isotype), and release of massive amounts of calprotectin (S100A8/S100A9) in severe cases. Immature CD10LowCD101-CXCR4+/- neutrophils with an immunosuppressive profile accumulated in the blood and lungs, suggesting emergency myelopoiesis. Finally, we show that calprotectin plasma level and a routine flow cytometry assay detecting decreased frequencies of non-classical monocytes could discriminate patients who develop a severe form of COVID-19, suggesting a predictive value that deserves prospective evaluation.
2469. Severe COVID-19 Is Marked by a Dysregulated Myeloid Cell Compartment.
作者: Jonas Schulte-Schrepping.;Nico Reusch.;Daniela Paclik.;Kevin Baßler.;Stephan Schlickeiser.;Bowen Zhang.;Benjamin Krämer.;Tobias Krammer.;Sophia Brumhard.;Lorenzo Bonaguro.;Elena De Domenico.;Daniel Wendisch.;Martin Grasshoff.;Theodore S Kapellos.;Michael Beckstette.;Tal Pecht.;Adem Saglam.;Oliver Dietrich.;Henrik E Mei.;Axel R Schulz.;Claudia Conrad.;Désirée Kunkel.;Ehsan Vafadarnejad.;Cheng-Jian Xu.;Arik Horne.;Miriam Herbert.;Anna Drews.;Charlotte Thibeault.;Moritz Pfeiffer.;Stefan Hippenstiel.;Andreas Hocke.;Holger Müller-Redetzky.;Katrin-Moira Heim.;Felix Machleidt.;Alexander Uhrig.;Laure Bosquillon de Jarcy.;Linda Jürgens.;Miriam Stegemann.;Christoph R Glösenkamp.;Hans-Dieter Volk.;Christine Goffinet.;Markus Landthaler.;Emanuel Wyler.;Philipp Georg.;Maria Schneider.;Chantip Dang-Heine.;Nick Neuwinger.;Kai Kappert.;Rudolf Tauber.;Victor Corman.;Jan Raabe.;Kim Melanie Kaiser.;Michael To Vinh.;Gereon Rieke.;Christian Meisel.;Thomas Ulas.;Matthias Becker.;Robert Geffers.;Martin Witzenrath.;Christian Drosten.;Norbert Suttorp.;Christof von Kalle.;Florian Kurth.;Kristian Händler.;Joachim L Schultze.;Anna C Aschenbrenner.;Yang Li.;Jacob Nattermann.;Birgit Sawitzki.;Antoine-Emmanuel Saliba.;Leif Erik Sander.; .
来源: Cell. 2020年182卷6期1419-1440.e23页
Coronavirus disease 2019 (COVID-19) is a mild to moderate respiratory tract infection, however, a subset of patients progress to severe disease and respiratory failure. The mechanism of protective immunity in mild forms and the pathogenesis of severe COVID-19 associated with increased neutrophil counts and dysregulated immune responses remain unclear. In a dual-center, two-cohort study, we combined single-cell RNA-sequencing and single-cell proteomics of whole-blood and peripheral-blood mononuclear cells to determine changes in immune cell composition and activation in mild versus severe COVID-19 (242 samples from 109 individuals) over time. HLA-DRhiCD11chi inflammatory monocytes with an interferon-stimulated gene signature were elevated in mild COVID-19. Severe COVID-19 was marked by occurrence of neutrophil precursors, as evidence of emergency myelopoiesis, dysfunctional mature neutrophils, and HLA-DRlo monocytes. Our study provides detailed insights into the systemic immune response to SARS-CoV-2 infection and reveals profound alterations in the myeloid cell compartment associated with severe COVID-19.
2470. Formation of NPR1 Condensates Promotes Cell Survival during the Plant Immune Response.
作者: Raul Zavaliev.;Rajinikanth Mohan.;Tianyuan Chen.;Xinnian Dong.
来源: Cell. 2020年182卷5期1093-1108.e18页
In plants, pathogen effector-triggered immunity (ETI) often leads to programmed cell death, which is restricted by NPR1, an activator of systemic acquired resistance. However, the biochemical activities of NPR1 enabling it to promote defense and restrict cell death remain unclear. Here we show that NPR1 promotes cell survival by targeting substrates for ubiquitination and degradation through formation of salicylic acid-induced NPR1 condensates (SINCs). SINCs are enriched with stress response proteins, including nucleotide-binding leucine-rich repeat immune receptors, oxidative and DNA damage response proteins, and protein quality control machineries. Transition of NPR1 into condensates is required for formation of the NPR1-Cullin 3 E3 ligase complex to ubiquitinate SINC-localized substrates, such as EDS1 and specific WRKY transcription factors, and promote cell survival during ETI. Our analysis of SINCs suggests that NPR1 is centrally integrated into the cell death or survival decisions in plant immunity by modulating multiple stress-responsive processes in this quasi-organelle.
2471. Ubiquitin Ligase COP1 Suppresses Neuroinflammation by Degrading c/EBPβ in Microglia.
作者: Ada Ndoja.;Rohit Reja.;Seung-Hye Lee.;Joshua D Webster.;Hai Ngu.;Christopher M Rose.;Donald S Kirkpatrick.;Zora Modrusan.;Ying-Jiun Jasmine Chen.;Debra L Dugger.;Vineela Gandham.;Luke Xie.;Kim Newton.;Vishva M Dixit.
来源: Cell. 2020年182卷5期1156-1169.e12页
Dysregulated microglia are intimately involved in neurodegeneration, including Alzheimer's disease (AD) pathogenesis, but the mechanisms controlling pathogenic microglial gene expression remain poorly understood. The transcription factor CCAAT/enhancer binding protein beta (c/EBPβ) regulates pro-inflammatory genes in microglia and is upregulated in AD. We show expression of c/EBPβ in microglia is regulated post-translationally by the ubiquitin ligase COP1 (also called RFWD2). In the absence of COP1, c/EBPβ accumulates rapidly and drives a potent pro-inflammatory and neurodegeneration-related gene program, evidenced by increased neurotoxicity in microglia-neuronal co-cultures. Antibody blocking studies reveal that neurotoxicity is almost entirely attributable to complement. Remarkably, loss of a single allele of Cebpb prevented the pro-inflammatory phenotype. COP1-deficient microglia markedly accelerated tau-mediated neurodegeneration in a mouse model where activated microglia play a deleterious role. Thus, COP1 is an important suppressor of pathogenic c/EBPβ-dependent gene expression programs in microglia.
2472. Extracellular Vesicle and Particle Biomarkers Define Multiple Human Cancers.
作者: Ayuko Hoshino.;Han Sang Kim.;Linda Bojmar.;Kofi Ennu Gyan.;Michele Cioffi.;Jonathan Hernandez.;Constantinos P Zambirinis.;Gonçalo Rodrigues.;Henrik Molina.;Søren Heissel.;Milica Tesic Mark.;Loïc Steiner.;Alberto Benito-Martin.;Serena Lucotti.;Angela Di Giannatale.;Katharine Offer.;Miho Nakajima.;Caitlin Williams.;Laura Nogués.;Fanny A Pelissier Vatter.;Ayako Hashimoto.;Alexander E Davies.;Daniela Freitas.;Candia M Kenific.;Yonathan Ararso.;Weston Buehring.;Pernille Lauritzen.;Yusuke Ogitani.;Kei Sugiura.;Naoko Takahashi.;Maša Alečković.;Kayleen A Bailey.;Joshua S Jolissant.;Huajuan Wang.;Ashton Harris.;L Miles Schaeffer.;Guillermo García-Santos.;Zoe Posner.;Vinod P Balachandran.;Yasmin Khakoo.;G Praveen Raju.;Avigdor Scherz.;Irit Sagi.;Ruth Scherz-Shouval.;Yosef Yarden.;Moshe Oren.;Mahathi Malladi.;Mary Petriccione.;Kevin C De Braganca.;Maria Donzelli.;Cheryl Fischer.;Stephanie Vitolano.;Geraldine P Wright.;Lee Ganshaw.;Mariel Marrano.;Amina Ahmed.;Joe DeStefano.;Enrico Danzer.;Michael H A Roehrl.;Norman J Lacayo.;Theresa C Vincent.;Martin R Weiser.;Mary S Brady.;Paul A Meyers.;Leonard H Wexler.;Srikanth R Ambati.;Alexander J Chou.;Emily K Slotkin.;Shakeel Modak.;Stephen S Roberts.;Ellen M Basu.;Daniel Diolaiti.;Benjamin A Krantz.;Fatima Cardoso.;Amber L Simpson.;Michael Berger.;Charles M Rudin.;Diane M Simeone.;Maneesh Jain.;Cyrus M Ghajar.;Surinder K Batra.;Ben Z Stanger.;Jack Bui.;Kristy A Brown.;Vinagolu K Rajasekhar.;John H Healey.;Maria de Sousa.;Kim Kramer.;Sujit Sheth.;Jeanine Baisch.;Virginia Pascual.;Todd E Heaton.;Michael P La Quaglia.;David J Pisapia.;Robert Schwartz.;Haiying Zhang.;Yuan Liu.;Arti Shukla.;Laurence Blavier.;Yves A DeClerck.;Mark LaBarge.;Mina J Bissell.;Thomas C Caffrey.;Paul M Grandgenett.;Michael A Hollingsworth.;Jacqueline Bromberg.;Bruno Costa-Silva.;Hector Peinado.;Yibin Kang.;Benjamin A Garcia.;Eileen M O'Reilly.;David Kelsen.;Tanya M Trippett.;David R Jones.;Irina R Matei.;William R Jarnagin.;David Lyden.
来源: Cell. 2020年182卷4期1044-1061.e18页
There is an unmet clinical need for improved tissue and liquid biopsy tools for cancer detection. We investigated the proteomic profile of extracellular vesicles and particles (EVPs) in 426 human samples from tissue explants (TEs), plasma, and other bodily fluids. Among traditional exosome markers, CD9, HSPA8, ALIX, and HSP90AB1 represent pan-EVP markers, while ACTB, MSN, and RAP1B are novel pan-EVP markers. To confirm that EVPs are ideal diagnostic tools, we analyzed proteomes of TE- (n = 151) and plasma-derived (n = 120) EVPs. Comparison of TE EVPs identified proteins (e.g., VCAN, TNC, and THBS2) that distinguish tumors from normal tissues with 90% sensitivity/94% specificity. Machine-learning classification of plasma-derived EVP cargo, including immunoglobulins, revealed 95% sensitivity/90% specificity in detecting cancer. Finally, we defined a panel of tumor-type-specific EVP proteins in TEs and plasma, which can classify tumors of unknown primary origin. Thus, EVP proteins can serve as reliable biomarkers for cancer detection and determining cancer type.
2473. A Thermostable mRNA Vaccine against COVID-19.
作者: Na-Na Zhang.;Xiao-Feng Li.;Yong-Qiang Deng.;Hui Zhao.;Yi-Jiao Huang.;Guan Yang.;Wei-Jin Huang.;Peng Gao.;Chao Zhou.;Rong-Rong Zhang.;Yan Guo.;Shi-Hui Sun.;Hang Fan.;Shu-Long Zu.;Qi Chen.;Qi He.;Tian-Shu Cao.;Xing-Yao Huang.;Hong-Ying Qiu.;Jian-Hui Nie.;Yuhang Jiang.;Hua-Yuan Yan.;Qing Ye.;Xia Zhong.;Xia-Lin Xue.;Zhen-Yu Zha.;Dongsheng Zhou.;Xiao Yang.;You-Chun Wang.;Bo Ying.;Cheng-Feng Qin.
来源: Cell. 2020年182卷5期1271-1283.e16页
There is an urgent need for vaccines against coronavirus disease 2019 (COVID-19) because of the ongoing SARS-CoV-2 pandemic. Among all approaches, a messenger RNA (mRNA)-based vaccine has emerged as a rapid and versatile platform to quickly respond to this challenge. Here, we developed a lipid nanoparticle-encapsulated mRNA (mRNA-LNP) encoding the receptor binding domain (RBD) of SARS-CoV-2 as a vaccine candidate (called ARCoV). Intramuscular immunization of ARCoV mRNA-LNP elicited robust neutralizing antibodies against SARS-CoV-2 as well as a Th1-biased cellular response in mice and non-human primates. Two doses of ARCoV immunization in mice conferred complete protection against the challenge of a SARS-CoV-2 mouse-adapted strain. Additionally, ARCoV is manufactured as a liquid formulation and can be stored at room temperature for at least 1 week. ARCoV is currently being evaluated in phase 1 clinical trials.
2474. ATP Synthase c-Subunit Leak Causes Aberrant Cellular Metabolism in Fragile X Syndrome.
作者: Pawel Licznerski.;Han-A Park.;Harshvardhan Rolyan.;Rongmin Chen.;Nelli Mnatsakanyan.;Paige Miranda.;Morven Graham.;Jing Wu.;Nicole Cruz-Reyes.;Nikita Mehta.;Sana Sohail.;Jorge Salcedo.;Erin Song.;Charles Effman.;Samuel Effman.;Lucas Brandao.;Gulan N Xu.;Amber Braker.;Valentin K Gribkoff.;Richard J Levy.;Elizabeth A Jonas.
来源: Cell. 2020年182卷5期1170-1185.e9页
Loss of the gene (Fmr1) encoding Fragile X mental retardation protein (FMRP) causes increased mRNA translation and aberrant synaptic development. We find neurons of the Fmr1-/y mouse have a mitochondrial inner membrane leak contributing to a "leak metabolism." In human Fragile X syndrome (FXS) fibroblasts and in Fmr1-/y mouse neurons, closure of the ATP synthase leak channel by mild depletion of its c-subunit or pharmacological inhibition normalizes stimulus-induced and constitutive mRNA translation rate, decreases lactate and key glycolytic and tricarboxylic acid (TCA) cycle enzyme levels, and triggers synapse maturation. FMRP regulates leak closure in wild-type (WT), but not FX synapses, by stimulus-dependent ATP synthase β subunit translation; this increases the ratio of ATP synthase enzyme to its c-subunit, enhancing ATP production efficiency and synaptic growth. In contrast, in FXS, inability to close developmental c-subunit leak prevents stimulus-dependent synaptic maturation. Therefore, ATP synthase c-subunit leak closure encourages development and attenuates autistic behaviors.
2475. TREM2 Modulation Remodels the Tumor Myeloid Landscape Enhancing Anti-PD-1 Immunotherapy.
作者: Martina Molgora.;Ekaterina Esaulova.;William Vermi.;Jinchao Hou.;Yun Chen.;Jingqin Luo.;Simone Brioschi.;Mattia Bugatti.;Andrea Salvatore Omodei.;Biancamaria Ricci.;Catrina Fronick.;Santosh K Panda.;Yoshiko Takeuchi.;Matthew M Gubin.;Roberta Faccio.;Marina Cella.;Susan Gilfillan.;Emil R Unanue.;Maxim N Artyomov.;Robert D Schreiber.;Marco Colonna.
来源: Cell. 2020年182卷4期886-900.e17页
Checkpoint immunotherapy unleashes T cell control of tumors, but is undermined by immunosuppressive myeloid cells. TREM2 is a myeloid receptor that transmits intracellular signals that sustain microglial responses during Alzheimer's disease. TREM2 is also expressed by tumor-infiltrating macrophages. Here, we found that Trem2-/- mice are more resistant to growth of various cancers than wild-type mice and are more responsive to anti-PD-1 immunotherapy. Furthermore, treatment with anti-TREM2 mAb curbed tumor growth and fostered regression when combined with anti-PD-1. scRNA-seq revealed that both TREM2 deletion and anti-TREM2 are associated with scant MRC1+ and CX3CR1+ macrophages in the tumor infiltrate, paralleled by expansion of myeloid subsets expressing immunostimulatory molecules that promote improved T cell responses. TREM2 was expressed in tumor macrophages in over 200 human cancer cases and inversely correlated with prolonged survival for two types of cancer. Thus, TREM2 might be targeted to modify tumor myeloid infiltrates and augment checkpoint immunotherapy.
2476. The In Situ Structure of Parkinson's Disease-Linked LRRK2.
作者: Reika Watanabe.;Robert Buschauer.;Jan Böhning.;Martina Audagnotto.;Keren Lasker.;Tsan-Wen Lu.;Daniela Boassa.;Susan Taylor.;Elizabeth Villa.
来源: Cell. 2020年182卷6期1508-1518.e16页
Mutations in leucine-rich repeat kinase 2 (LRRK2) are the most frequent cause of familial Parkinson's disease. LRRK2 is a multi-domain protein containing a kinase and GTPase. Using correlative light and electron microscopy, in situ cryo-electron tomography, and subtomogram analysis, we reveal a 14-Å structure of LRRK2 bearing a pathogenic mutation that oligomerizes as a right-handed double helix around microtubules, which are left-handed. Using integrative modeling, we determine the architecture of LRRK2, showing that the GTPase and kinase are in close proximity, with the GTPase closer to the microtubule surface, whereas the kinase is exposed to the cytoplasm. We identify two oligomerization interfaces mediated by non-catalytic domains. Mutation of one of these abolishes LRRK2 microtubule-association. Our work demonstrates the power of cryo-electron tomography to generate models of previously unsolved structures in their cellular environment.
2477. Structural Basis for Helicase-Polymerase Coupling in the SARS-CoV-2 Replication-Transcription Complex.
作者: James Chen.;Brandon Malone.;Eliza Llewellyn.;Michael Grasso.;Patrick M M Shelton.;Paul Dominic B Olinares.;Kashyap Maruthi.;Edward T Eng.;Hasan Vatandaslar.;Brian T Chait.;Tarun M Kapoor.;Seth A Darst.;Elizabeth A Campbell.
来源: Cell. 2020年182卷6期1560-1573.e13页
SARS-CoV-2 is the causative agent of the 2019-2020 pandemic. The SARS-CoV-2 genome is replicated and transcribed by the RNA-dependent RNA polymerase holoenzyme (subunits nsp7/nsp82/nsp12) along with a cast of accessory factors. One of these factors is the nsp13 helicase. Both the holo-RdRp and nsp13 are essential for viral replication and are targets for treating the disease COVID-19. Here we present cryoelectron microscopic structures of the SARS-CoV-2 holo-RdRp with an RNA template product in complex with two molecules of the nsp13 helicase. The Nidovirales order-specific N-terminal domains of each nsp13 interact with the N-terminal extension of each copy of nsp8. One nsp13 also contacts the nsp12 thumb. The structure places the nucleic acid-binding ATPase domains of the helicase directly in front of the replicating-transcribing holo-RdRp, constraining models for nsp13 function. We also observe ADP-Mg2+ bound in the nsp12 N-terminal nidovirus RdRp-associated nucleotidyltransferase domain, detailing a new pocket for anti-viral therapy development.
2478. Coupled scRNA-Seq and Intracellular Protein Activity Reveal an Immunosuppressive Role of TREM2 in Cancer.
作者: Yonatan Katzenelenbogen.;Fadi Sheban.;Adam Yalin.;Ido Yofe.;Dmitry Svetlichnyy.;Diego Adhemar Jaitin.;Chamutal Bornstein.;Adi Moshe.;Hadas Keren-Shaul.;Merav Cohen.;Shuang-Yin Wang.;Baoguo Li.;Eyal David.;Tomer-Meir Salame.;Assaf Weiner.;Ido Amit.
来源: Cell. 2020年182卷4期872-885.e19页
Cell function and activity are regulated through integration of signaling, epigenetic, transcriptional, and metabolic pathways. Here, we introduce INs-seq, an integrated technology for massively parallel recording of single-cell RNA sequencing (scRNA-seq) and intracellular protein activity. We demonstrate the broad utility of INs-seq for discovering new immune subsets by profiling different intracellular signatures of immune signaling, transcription factor combinations, and metabolic activity. Comprehensive mapping of Arginase 1-expressing cells within tumor models, a metabolic immune signature of suppressive activity, discovers novel Arg1+ Trem2+ regulatory myeloid (Mreg) cells and identifies markers, metabolic activity, and pathways associated with these cells. Genetic ablation of Trem2 in mice inhibits accumulation of intra-tumoral Mreg cells, leading to a marked decrease in dysfunctional CD8+ T cells and reduced tumor growth. This study establishes INs-seq as a broadly applicable technology for elucidating integrated transcriptional and intra-cellular maps and identifies the molecular signature of myeloid suppressive cells in tumors.
2479. Converting Escherichia coli to a Synthetic Methylotroph Growing Solely on Methanol.
作者: Frederic Y-H Chen.;Hsin-Wei Jung.;Chao-Yin Tsuei.;James C Liao.
来源: Cell. 2020年182卷4期933-946.e14页
Methanol, being electron rich and derivable from methane or CO2, is a potentially renewable one-carbon (C1) feedstock for microorganisms. Although the ribulose monophosphate (RuMP) cycle used by methylotrophs to assimilate methanol differs from the typical sugar metabolism by only three enzymes, turning a non-methylotrophic organism to a synthetic methylotroph that grows to a high cell density has been challenging. Here we reprogrammed E. coli using metabolic robustness criteria followed by laboratory evolution to establish a strain that can efficiently utilize methanol as the sole carbon source. This synthetic methylotroph alleviated a so far uncharacterized hurdle, DNA-protein crosslinking (DPC), by insertion sequence (IS)-mediated copy number variations (CNVs) and balanced the metabolic flux by mutations. Being capable of growing at a rate comparable with natural methylotrophs in a wide range of methanol concentrations, this synthetic methylotrophic strain illustrates genome editing and evolution for microbial tropism changes and expands the scope of biological C1 conversion.
2480. Development of an Inactivated Vaccine Candidate, BBIBP-CorV, with Potent Protection against SARS-CoV-2.
作者: Hui Wang.;Yuntao Zhang.;Baoying Huang.;Wei Deng.;Yaru Quan.;Wenling Wang.;Wenbo Xu.;Yuxiu Zhao.;Na Li.;Jin Zhang.;Hongyang Liang.;Linlin Bao.;Yanfeng Xu.;Ling Ding.;Weimin Zhou.;Hong Gao.;Jiangning Liu.;Peihua Niu.;Li Zhao.;Wei Zhen.;Hui Fu.;Shouzhi Yu.;Zhengli Zhang.;Guangxue Xu.;Changgui Li.;Zhiyong Lou.;Miao Xu.;Chuan Qin.;Guizhen Wu.;George Fu Gao.;Wenjie Tan.;Xiaoming Yang.
来源: Cell. 2020年182卷3期713-721.e9页
The coronavirus disease 2019 (COVID-19) pandemic caused by severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) threatens global public health. The development of a vaccine is urgently needed for the prevention and control of COVID-19. Here, we report the pilot-scale production of an inactivated SARS-CoV-2 vaccine candidate (BBIBP-CorV) that induces high levels of neutralizing antibodies titers in mice, rats, guinea pigs, rabbits, and nonhuman primates (cynomolgus monkeys and rhesus macaques) to provide protection against SARS-CoV-2. Two-dose immunizations using 2 μg/dose of BBIBP-CorV provided highly efficient protection against SARS-CoV-2 intratracheal challenge in rhesus macaques, without detectable antibody-dependent enhancement of infection. In addition, BBIBP-CorV exhibits efficient productivity and good genetic stability for vaccine manufacture. These results support the further evaluation of BBIBP-CorV in a clinical trial.
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