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共有 2840 条符合本次的查询结果, 用时 2.5013717 秒

2541. Molecular Transducers of Physical Activity Consortium (MoTrPAC): Mapping the Dynamic Responses to Exercise.

作者: James A Sanford.;Christopher D Nogiec.;Malene E Lindholm.;Joshua N Adkins.;David Amar.;Surendra Dasari.;Jonelle K Drugan.;Facundo M Fernández.;Shlomit Radom-Aizik.;Simon Schenk.;Michael P Snyder.;Russell P Tracy.;Patrick Vanderboom.;Scott Trappe.;Martin J Walsh.; .
来源: Cell. 2020年181卷7期1464-1474页
Exercise provides a robust physiological stimulus that evokes cross-talk among multiple tissues that when repeated regularly (i.e., training) improves physiological capacity, benefits numerous organ systems, and decreases the risk for premature mortality. However, a gap remains in identifying the detailed molecular signals induced by exercise that benefits health and prevents disease. The Molecular Transducers of Physical Activity Consortium (MoTrPAC) was established to address this gap and generate a molecular map of exercise. Preclinical and clinical studies will examine the systemic effects of endurance and resistance exercise across a range of ages and fitness levels by molecular probing of multiple tissues before and after acute and chronic exercise. From this multi-omic and bioinformatic analysis, a molecular map of exercise will be established. Altogether, MoTrPAC will provide a public database that is expected to enhance our understanding of the health benefits of exercise and to provide insight into how physical activity mitigates disease.

2542. Mapping the Uncharted Territories of Human Brain Malignancies.

作者: Daan Juri Kloosterman.;Leila Akkari.
来源: Cell. 2020年181卷7期1454-1457页
Despite its success in multiple tumor types, immunotherapy remains poorly efficacious in brain malignancies. In this issue of Cell, Friebel et al. and Klemm et al. provide in-depth insights into the versatile nuances of immune cells in primary and metastatic brain tumors, granting the field with a rich framework to explore novel therapeutic avenues.

2543. Role of Microbiota-Derived Bile Acids in Enteric Infections.

作者: Casey M Theriot.;William A Petri.
来源: Cell. 2020年181卷7期1452-1454页
In this issue of Cell, Alavi et al. report that infection by Vibrio cholerae is blocked by gut microbiome-mediated hydrolysis of bile acids. Cholera therefore joins amebic dysentery and Clostridioides difficile colitis as enteric infections profoundly influenced by the microbiome's impact on bile acid metabolism.

2544. Cap-Snatching Leads to Novel Viral Proteins.

作者: Alistair B Russell.
来源: Cell. 2020年181卷7期1450-1451页
Some negative-sense RNA viruses prime mRNA transcription using host 5' cap sequences, usurping host translational machinery and evading antiviral surveillance. In this issue of Cell, Ho et al. identify an additional consequence of this viral strategy: the acquisition of upstream start codons from host-derived sequences and subsequent translation of novel viral products.

2545. The Immunoglobulin Superfamily Receptome Defines Cancer-Relevant Networks Associated with Clinical Outcome.

作者: Erik Verschueren.;Bushra Husain.;Kobe Yuen.;Yi Sun.;Sairupa Paduchuri.;Yasin Senbabaoglu.;Isabelle Lehoux.;Tia A Arena.;Blair Wilson.;Steve Lianoglou.;Corey Bakalarski.;Yvonne Franke.;Pamela Chan.;Athena W Wong.;Lino C Gonzalez.;Sanjeev Mariathasan.;Shannon J Turley.;Jennie R Lill.;Nadia Martinez-Martin.
来源: Cell. 2020年182卷2期329-344.e19页
Cell surface receptors and their interactions play a central role in physiological and pathological signaling. Despite its clinical relevance, the immunoglobulin superfamily (IgSF) remains uncharacterized and underrepresented in databases. Here, we present a systematic extracellular protein map, the IgSF interactome. Using a high-throughput technology to interrogate most single transmembrane receptors for binding to 445 IgSF proteins, we identify over 500 interactions, 82% previously undocumented, and confirm more than 60 receptor-ligand pairs using orthogonal assays. Our study reveals a map of cell-type-specific interactions and the landscape of dysregulated receptor-ligand crosstalk in cancer, including selective loss of function for tumor-associated mutations. Furthermore, investigation of the IgSF interactome in a large cohort of cancer patients identifies interacting protein signatures associated with clinical outcome. The IgSF interactome represents an important resource to fuel biological discoveries and a framework for understanding the functional organization of the surfaceome during homeostasis and disease, ultimately informing therapeutic development.

2546. Recognition of Semaphorin Proteins by P. sordellii Lethal Toxin Reveals Principles of Receptor Specificity in Clostridial Toxins.

作者: Hunsang Lee.;Greg L Beilhartz.;Iga Kucharska.;Swetha Raman.;Hong Cui.;Mandy Hiu Yi Lam.;Huazhu Liang.;John L Rubinstein.;Daniel Schramek.;Jean-Philippe Julien.;Roman A Melnyk.;Mikko Taipale.
来源: Cell. 2020年182卷2期345-356.e16页
Pathogenic clostridial species secrete potent toxins that induce severe host tissue damage. Paeniclostridium sordellii lethal toxin (TcsL) causes an almost invariably lethal toxic shock syndrome associated with gynecological infections. TcsL is 87% similar to C. difficile TcdB, which enters host cells via Frizzled receptors in colon epithelium. However, P. sordellii infections target vascular endothelium, suggesting that TcsL exploits another receptor. Here, using CRISPR/Cas9 screening, we establish semaphorins SEMA6A and SEMA6B as TcsL receptors. We demonstrate that recombinant SEMA6A can protect mice from TcsL-induced edema. A 3.3 Å cryo-EM structure shows that TcsL binds SEMA6A with the same region that in TcdB binds structurally unrelated Frizzled. Remarkably, 15 mutations in this evolutionarily divergent surface are sufficient to switch binding specificity of TcsL to that of TcdB. Our findings establish semaphorins as physiologically relevant receptors for TcsL and reveal the molecular basis for the difference in tissue targeting and disease pathogenesis between highly related toxins.

2547. For Black Scientists, the Sorrow Is Also Personal.

作者: Kafui Dzirasa.
来源: Cell. 2020年182卷2期263-264页
I have tried to live in a world that does not see color but have only succeeded in living in a world that does not see me.

2548. Developing Covalent Protein Drugs via Proximity-Enabled Reactive Therapeutics.

作者: Qingke Li.;Qu Chen.;Paul C Klauser.;Mengyuan Li.;Feng Zheng.;Nanxi Wang.;Xiaoying Li.;Qianbing Zhang.;Xuemei Fu.;Qian Wang.;Yang Xu.;Lei Wang.
来源: Cell. 2020年182卷1期85-97.e16页
Small molecule covalent drugs provide desirable therapeutic properties over noncovalent ones for treating challenging diseases. The potential of covalent protein drugs, however, remains unexplored due to protein's inability to bind targets covalently. We report a proximity-enabled reactive therapeutics (PERx) approach to generate covalent protein drugs. Through genetic code expansion, a latent bioreactive amino acid fluorosulfate-L-tyrosine (FSY) was incorporated into human programmed cell death protein-1 (PD-1). Only when PD-1 interacts with PD-L1 did the FSY react with a proximal histidine of PD-L1 selectively, enabling irreversible binding of PD-1 to only PD-L1 in vitro and in vivo. When administrated in immune-humanized mice, the covalent PD-1(FSY) exhibited strikingly more potent antitumor effect over the noncovalent wild-type PD-1, attaining therapeutic efficacy equivalent or superior to anti-PD-L1 antibody. PERx should provide a general platform technology for converting various interacting proteins into covalent binders, achieving specific covalent protein targeting for biological studies and therapeutic capability unattainable with conventional noncovalent protein drugs.

2549. Multimodal Analysis of Composition and Spatial Architecture in Human Squamous Cell Carcinoma.

作者: Andrew L Ji.;Adam J Rubin.;Kim Thrane.;Sizun Jiang.;David L Reynolds.;Robin M Meyers.;Margaret G Guo.;Benson M George.;Annelie Mollbrink.;Joseph Bergenstråhle.;Ludvig Larsson.;Yunhao Bai.;Bokai Zhu.;Aparna Bhaduri.;Jordan M Meyers.;Xavier Rovira-Clavé.;S Tyler Hollmig.;Sumaira Z Aasi.;Garry P Nolan.;Joakim Lundeberg.;Paul A Khavari.
来源: Cell. 2020年182卷2期497-514.e22页
To define the cellular composition and architecture of cutaneous squamous cell carcinoma (cSCC), we combined single-cell RNA sequencing with spatial transcriptomics and multiplexed ion beam imaging from a series of human cSCCs and matched normal skin. cSCC exhibited four tumor subpopulations, three recapitulating normal epidermal states, and a tumor-specific keratinocyte (TSK) population unique to cancer, which localized to a fibrovascular niche. Integration of single-cell and spatial data mapped ligand-receptor networks to specific cell types, revealing TSK cells as a hub for intercellular communication. Multiple features of potential immunosuppression were observed, including T regulatory cell (Treg) co-localization with CD8 T cells in compartmentalized tumor stroma. Finally, single-cell characterization of human tumor xenografts and in vivo CRISPR screens identified essential roles for specific tumor subpopulation-enriched gene networks in tumorigenesis. These data define cSCC tumor and stromal cell subpopulations, the spatial niches where they interact, and the communicating gene networks that they engage in cancer.

2550. Hybrid Gene Origination Creates Human-Virus Chimeric Proteins during Infection.

作者: Jessica Sook Yuin Ho.;Matthew Angel.;Yixuan Ma.;Elizabeth Sloan.;Guojun Wang.;Carles Martinez-Romero.;Marta Alenquer.;Vladimir Roudko.;Liliane Chung.;Simin Zheng.;Max Chang.;Yesai Fstkchyan.;Sara Clohisey.;Adam M Dinan.;James Gibbs.;Robert Gifford.;Rong Shen.;Quan Gu.;Nerea Irigoyen.;Laura Campisi.;Cheng Huang.;Nan Zhao.;Joshua D Jones.;Ingeborg van Knippenberg.;Zeyu Zhu.;Natasha Moshkina.;Léa Meyer.;Justine Noel.;Zuleyma Peralta.;Veronica Rezelj.;Robyn Kaake.;Brad Rosenberg.;Bo Wang.;Jiajie Wei.;Slobodan Paessler.;Helen M Wise.;Jeffrey Johnson.;Alessandro Vannini.;Maria João Amorim.;J Kenneth Baillie.;Emily R Miraldi.;Christopher Benner.;Ian Brierley.;Paul Digard.;Marta Łuksza.;Andrew E Firth.;Nevan Krogan.;Benjamin D Greenbaum.;Megan K MacLeod.;Harm van Bakel.;Adolfo Garcìa-Sastre.;Jonathan W Yewdell.;Edward Hutchinson.;Ivan Marazzi.
来源: Cell. 2020年181卷7期1502-1517.e23页
RNA viruses are a major human health threat. The life cycles of many highly pathogenic RNA viruses like influenza A virus (IAV) and Lassa virus depends on host mRNA, because viral polymerases cleave 5'-m7G-capped host transcripts to prime viral mRNA synthesis ("cap-snatching"). We hypothesized that start codons within cap-snatched host transcripts could generate chimeric human-viral mRNAs with coding potential. We report the existence of this mechanism of gene origination, which we named "start-snatching." Depending on the reading frame, start-snatching allows the translation of host and viral "untranslated regions" (UTRs) to create N-terminally extended viral proteins or entirely novel polypeptides by genetic overprinting. We show that both types of chimeric proteins are made in IAV-infected cells, generate T cell responses, and contribute to virulence. Our results indicate that during infection with IAV, and likely a multitude of other human, animal and plant viruses, a host-dependent mechanism allows the genesis of hybrid genes.

2551. Metabolic Fingerprinting Links Oncogenic PIK3CA with Enhanced Arachidonic Acid-Derived Eicosanoids.

作者: Nikos Koundouros.;Evdoxia Karali.;Aurelien Tripp.;Adamo Valle.;Paolo Inglese.;Nicholas J S Perry.;David J Magee.;Sara Anjomani Virmouni.;George A Elder.;Adam L Tyson.;Maria Luisa Dória.;Antoinette van Weverwijk.;Renata F Soares.;Clare M Isacke.;Jeremy K Nicholson.;Robert C Glen.;Zoltan Takats.;George Poulogiannis.
来源: Cell. 2020年181卷7期1596-1611.e27页
Oncogenic transformation is associated with profound changes in cellular metabolism, but whether tracking these can improve disease stratification or influence therapy decision-making is largely unknown. Using the iKnife to sample the aerosol of cauterized specimens, we demonstrate a new mode of real-time diagnosis, coupling metabolic phenotype to mutant PIK3CA genotype. Oncogenic PIK3CA results in an increase in arachidonic acid and a concomitant overproduction of eicosanoids, acting to promote cell proliferation beyond a cell-autonomous manner. Mechanistically, mutant PIK3CA drives a multimodal signaling network involving mTORC2-PKCζ-mediated activation of the calcium-dependent phospholipase A2 (cPLA2). Notably, inhibiting cPLA2 synergizes with fatty acid-free diet to restore immunogenicity and selectively reduce mutant PIK3CA-induced tumorigenicity. Besides highlighting the potential for metabolic phenotyping in stratified medicine, this study reveals an important role for activated PI3K signaling in regulating arachidonic acid metabolism, uncovering a targetable metabolic vulnerability that largely depends on dietary fat restriction. VIDEO ABSTRACT.

2552. Pan-Genome of Wild and Cultivated Soybeans.

作者: Yucheng Liu.;Huilong Du.;Pengcheng Li.;Yanting Shen.;Hua Peng.;Shulin Liu.;Guo-An Zhou.;Haikuan Zhang.;Zhi Liu.;Miao Shi.;Xuehui Huang.;Yan Li.;Min Zhang.;Zheng Wang.;Baoge Zhu.;Bin Han.;Chengzhi Liang.;Zhixi Tian.
来源: Cell. 2020年182卷1期162-176.e13页
Soybean is one of the most important vegetable oil and protein feed crops. To capture the entire genomic diversity, it is needed to construct a complete high-quality pan-genome from diverse soybean accessions. In this study, we performed individual de novo genome assemblies for 26 representative soybeans that were selected from 2,898 deeply sequenced accessions. Using these assembled genomes together with three previously reported genomes, we constructed a graph-based genome and performed pan-genome analysis, which identified numerous genetic variations that cannot be detected by direct mapping of short sequence reads onto a single reference genome. The structural variations from the 2,898 accessions that were genotyped based on the graph-based genome and the RNA sequencing (RNA-seq) data from the representative 26 accessions helped to link genetic variations to candidate genes that are responsible for important traits. This pan-genome resource will promote evolutionary and functional genomics studies in soybean.

2553. A SARS-CoV-2 Infection Model in Mice Demonstrates Protection by Neutralizing Antibodies.

作者: Ahmed O Hassan.;James Brett Case.;Emma S Winkler.;Larissa B Thackray.;Natasha M Kafai.;Adam L Bailey.;Broc T McCune.;Julie M Fox.;Rita E Chen.;Wafaa B Alsoussi.;Jackson S Turner.;Aaron J Schmitz.;Tingting Lei.;Swathi Shrihari.;Shamus P Keeler.;Daved H Fremont.;Suellen Greco.;Paul B McCray.;Stanley Perlman.;Michael J Holtzman.;Ali H Ellebedy.;Michael S Diamond.
来源: Cell. 2020年182卷3期744-753.e4页
Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) has caused a pandemic with millions of human infections. One limitation to the evaluation of potential therapies and vaccines to inhibit SARS-CoV-2 infection and ameliorate disease is the lack of susceptible small animals in large numbers. Commercially available laboratory strains of mice are not readily infected by SARS-CoV-2 because of species-specific differences in their angiotensin-converting enzyme 2 (ACE2) receptors. Here, we transduced replication-defective adenoviruses encoding human ACE2 via intranasal administration into BALB/c mice and established receptor expression in lung tissues. hACE2-transduced mice were productively infected with SARS-CoV-2, and this resulted in high viral titers in the lung, lung pathology, and weight loss. Passive transfer of a neutralizing monoclonal antibody reduced viral burden in the lung and mitigated inflammation and weight loss. The development of an accessible mouse model of SARS-CoV-2 infection and pathogenesis will expedite the testing and deployment of therapeutics and vaccines.

2554. Major Impacts of Widespread Structural Variation on Gene Expression and Crop Improvement in Tomato.

作者: Michael Alonge.;Xingang Wang.;Matthias Benoit.;Sebastian Soyk.;Lara Pereira.;Lei Zhang.;Hamsini Suresh.;Srividya Ramakrishnan.;Florian Maumus.;Danielle Ciren.;Yuval Levy.;Tom Hai Harel.;Gili Shalev-Schlosser.;Ziva Amsellem.;Hamid Razifard.;Ana L Caicedo.;Denise M Tieman.;Harry Klee.;Melanie Kirsche.;Sergey Aganezov.;T Rhyker Ranallo-Benavidez.;Zachary H Lemmon.;Jennifer Kim.;Gina Robitaille.;Melissa Kramer.;Sara Goodwin.;W Richard McCombie.;Samuel Hutton.;Joyce Van Eck.;Jesse Gillis.;Yuval Eshed.;Fritz J Sedlazeck.;Esther van der Knaap.;Michael C Schatz.;Zachary B Lippman.
来源: Cell. 2020年182卷1期145-161.e23页
Structural variants (SVs) underlie important crop improvement and domestication traits. However, resolving the extent, diversity, and quantitative impact of SVs has been challenging. We used long-read nanopore sequencing to capture 238,490 SVs in 100 diverse tomato lines. This panSV genome, along with 14 new reference assemblies, revealed large-scale intermixing of diverse genotypes, as well as thousands of SVs intersecting genes and cis-regulatory regions. Hundreds of SV-gene pairs exhibit subtle and significant expression changes, which could broadly influence quantitative trait variation. By combining quantitative genetics with genome editing, we show how multiple SVs that changed gene dosage and expression levels modified fruit flavor, size, and production. In the last example, higher order epistasis among four SVs affecting three related transcription factors allowed introduction of an important harvesting trait in modern tomato. Our findings highlight the underexplored role of SVs in genotype-to-phenotype relationships and their widespread importance and utility in crop improvement.

2555. CBASS Immunity Uses CARF-Related Effectors to Sense 3'-5'- and 2'-5'-Linked Cyclic Oligonucleotide Signals and Protect Bacteria from Phage Infection.

作者: Brianna Lowey.;Aaron T Whiteley.;Alexander F A Keszei.;Benjamin R Morehouse.;Ian T Mathews.;Sadie P Antine.;Victor J Cabrera.;Dmitry Kashin.;Percy Niemann.;Mohit Jain.;Frank Schwede.;John J Mekalanos.;Sichen Shao.;Amy S Y Lee.;Philip J Kranzusch.
来源: Cell. 2020年182卷1期38-49.e17页
cGAS/DncV-like nucleotidyltransferase (CD-NTase) enzymes are immune sensors that synthesize nucleotide second messengers and initiate antiviral responses in bacterial and animal cells. Here, we discover Enterobacter cloacae CD-NTase-associated protein 4 (Cap4) as a founding member of a diverse family of >2,000 bacterial receptors that respond to CD-NTase signals. Structures of Cap4 reveal a promiscuous DNA endonuclease domain activated through ligand-induced oligomerization. Oligonucleotide recognition occurs through an appended SAVED domain that is an unexpected fusion of two CRISPR-associated Rossman fold (CARF) subunits co-opted from type III CRISPR immunity. Like a lock and key, SAVED effectors exquisitely discriminate 2'-5'- and 3'-5'-linked bacterial cyclic oligonucleotide signals and enable specific recognition of at least 180 potential nucleotide second messenger species. Our results reveal SAVED CARF family proteins as major nucleotide second messenger receptors in CBASS and CRISPR immune defense and extend the importance of linkage specificity beyond mammalian cGAS-STING signaling.

2556. Structural Basis of Low-pH-Dependent Lysosomal Cholesterol Egress by NPC1 and NPC2.

作者: Hongwu Qian.;Xuelan Wu.;Ximing Du.;Xia Yao.;Xin Zhao.;Joyce Lee.;Hongyuan Yang.;Nieng Yan.
来源: Cell. 2020年182卷1期98-111.e18页
Lysosomal cholesterol egress requires two proteins, NPC1 and NPC2, whose defects are responsible for Niemann-Pick disease type C (NPC). Here, we present systematic structural characterizations that reveal the molecular basis for low-pH-dependent cholesterol delivery from NPC2 to the transmembrane (TM) domain of NPC1. At pH 8.0, similar structures of NPC1 were obtained in nanodiscs and in detergent at resolutions of 3.6 Å and 3.0 Å, respectively. A tunnel connecting the N-terminal domain (NTD) and the transmembrane sterol-sensing domain (SSD) was unveiled. At pH 5.5, the NTD exhibits two conformations, suggesting the motion for cholesterol delivery to the tunnel. A putative cholesterol molecule is found at the membrane boundary of the tunnel, and TM2 moves toward formation of a surface pocket on the SSD. Finally, the structure of the NPC1-NPC2 complex at 4.0 Å resolution was obtained at pH 5.5, elucidating the molecular basis for cholesterol handoff from NPC2 to NPC1(NTD).

2557. How Support of Early Career Researchers Can Reset Science in the Post-COVID19 World.

作者: Erin M Gibson.;F Chris Bennett.;Shawn M Gillespie.;Ali Deniz Güler.;David H Gutmann.;Casey H Halpern.;Sarah C Kucenas.;Clete A Kushida.;Mackenzie Lemieux.;Shane Liddelow.;Shannon L Macauley.;Qingyun Li.;Matthew A Quinn.;Laura Weiss Roberts.;Naresha Saligrama.;Kathryn R Taylor.;Humsa S Venkatesh.;Belgin Yalçın.;J Bradley Zuchero.
来源: Cell. 2020年181卷7期1445-1449页
The COVID19 crisis has magnified the issues plaguing academic science, but it has also provided the scientific establishment with an unprecedented opportunity to reset. Shoring up the foundation of academic science will require a concerted effort between funding agencies, universities, and the public to rethink how we support scientists, with a special emphasis on early career researchers.

2558. Determinants of Base Editing Outcomes from Target Library Analysis and Machine Learning.

作者: Mandana Arbab.;Max W Shen.;Beverly Mok.;Christopher Wilson.;Żaneta Matuszek.;Christopher A Cassa.;David R Liu.
来源: Cell. 2020年182卷2期463-480.e30页
Although base editors are widely used to install targeted point mutations, the factors that determine base editing outcomes are not well understood. We characterized sequence-activity relationships of 11 cytosine and adenine base editors (CBEs and ABEs) on 38,538 genomically integrated targets in mammalian cells and used the resulting outcomes to train BE-Hive, a machine learning model that accurately predicts base editing genotypic outcomes (R ≈ 0.9) and efficiency (R ≈ 0.7). We corrected 3,388 disease-associated SNVs with ≥90% precision, including 675 alleles with bystander nucleotides that BE-Hive correctly predicted would not be edited. We discovered determinants of previously unpredictable C-to-G, or C-to-A editing and used these discoveries to correct coding sequences of 174 pathogenic transversion SNVs with ≥90% precision. Finally, we used insights from BE-Hive to engineer novel CBE variants that modulate editing outcomes. These discoveries illuminate base editing, enable editing at previously intractable targets, and provide new base editors with improved editing capabilities.

2559. SnapShot: Meiosis - Prophase I.

作者: Laura Láscarez-Lagunas.;Marina Martinez-Garcia.;Mónica Colaiácovo.
来源: Cell. 2020年181卷6期1442-1442.e1页
Meiosis is the specialized cell division that generates haploid gametes and is therefore essential for sexual reproduction. This SnapShot encompasses key events taking place during prophase I of meiosis that are required for achieving proper chromosome segregation and highlights how these are both conserved and diverged throughout five different species. To view this SnapShot, open or download the PDF.

2560. Structural Basis for Potent Neutralization of Betacoronaviruses by Single-Domain Camelid Antibodies.

作者: Daniel Wrapp.;Dorien De Vlieger.;Kizzmekia S Corbett.;Gretel M Torres.;Nianshuang Wang.;Wander Van Breedam.;Kenny Roose.;Loes van Schie.; .;Markus Hoffmann.;Stefan Pöhlmann.;Barney S Graham.;Nico Callewaert.;Bert Schepens.;Xavier Saelens.;Jason S McLellan.
来源: Cell. 2020年181卷6期1436-1441页
共有 2840 条符合本次的查询结果, 用时 2.5013717 秒