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基本情報
登録情報 | データベース: PDB / ID: 7bel | |||||||||
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タイトル | Crystal structure of the receptor binding domain of SARS-CoV-2 Spike glycoprotein in a ternary complex with COVOX-88 and COVOX-45 Fabs | |||||||||
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![]() | VIRAL PROTEIN/IMMUNE SYSTEM / SARS-CoV-2 / antibody / germline / V-gene / receptor-binding-domain / spike / neutralisation / protection / glycosylation / valency / VIRAL PROTEIN / IMMUNE SYSTEM / VIRAL PROTEIN-IMMUNE SYSTEM complex | |||||||||
機能・相同性 | ![]() symbiont-mediated disruption of host tissue / Maturation of spike protein / Translation of Structural Proteins / Virion Assembly and Release / host cell surface / viral translation / host extracellular space / symbiont-mediated-mediated suppression of host tetherin activity / Induction of Cell-Cell Fusion / structural constituent of virion ...symbiont-mediated disruption of host tissue / Maturation of spike protein / Translation of Structural Proteins / Virion Assembly and Release / host cell surface / viral translation / host extracellular space / symbiont-mediated-mediated suppression of host tetherin activity / Induction of Cell-Cell Fusion / structural constituent of virion / entry receptor-mediated virion attachment to host cell / membrane fusion / Attachment and Entry / host cell endoplasmic reticulum-Golgi intermediate compartment membrane / positive regulation of viral entry into host cell / receptor-mediated virion attachment to host cell / host cell surface receptor binding / symbiont-mediated suppression of host innate immune response / receptor ligand activity / endocytosis involved in viral entry into host cell / fusion of virus membrane with host plasma membrane / fusion of virus membrane with host endosome membrane / viral envelope / symbiont entry into host cell / virion attachment to host cell / SARS-CoV-2 activates/modulates innate and adaptive immune responses / host cell plasma membrane / virion membrane / identical protein binding / membrane / plasma membrane 類似検索 - 分子機能 | |||||||||
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![]() | Zhou, D. / Zhao, Y. / Ren, J. / Stuart, D. | |||||||||
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![]() | ![]() タイトル: The antigenic anatomy of SARS-CoV-2 receptor binding domain. 著者: Wanwisa Dejnirattisai / Daming Zhou / Helen M Ginn / Helen M E Duyvesteyn / Piyada Supasa / James Brett Case / Yuguang Zhao / Thomas S Walter / Alexander J Mentzer / Chang Liu / Beibei Wang / ...著者: Wanwisa Dejnirattisai / Daming Zhou / Helen M Ginn / Helen M E Duyvesteyn / Piyada Supasa / James Brett Case / Yuguang Zhao / Thomas S Walter / Alexander J Mentzer / Chang Liu / Beibei Wang / Guido C Paesen / Jose Slon-Campos / César López-Camacho / Natasha M Kafai / Adam L Bailey / Rita E Chen / Baoling Ying / Craig Thompson / Jai Bolton / Alex Fyfe / Sunetra Gupta / Tiong Kit Tan / Javier Gilbert-Jaramillo / William James / Michael Knight / Miles W Carroll / Donal Skelly / Christina Dold / Yanchun Peng / Robert Levin / Tao Dong / Andrew J Pollard / Julian C Knight / Paul Klenerman / Nigel Temperton / David R Hall / Mark A Williams / Neil G Paterson / Felicity K R Bertram / C Alistair Siebert / Daniel K Clare / Andrew Howe / Julika Radecke / Yun Song / Alain R Townsend / Kuan-Ying A Huang / Elizabeth E Fry / Juthathip Mongkolsapaya / Michael S Diamond / Jingshan Ren / David I Stuart / Gavin R Screaton / ![]() ![]() ![]() ![]() 要旨: Antibodies are crucial to immune protection against SARS-CoV-2, with some in emergency use as therapeutics. Here, we identify 377 human monoclonal antibodies (mAbs) recognizing the virus spike and ...Antibodies are crucial to immune protection against SARS-CoV-2, with some in emergency use as therapeutics. Here, we identify 377 human monoclonal antibodies (mAbs) recognizing the virus spike and focus mainly on 80 that bind the receptor binding domain (RBD). We devise a competition data-driven method to map RBD binding sites. We find that although antibody binding sites are widely dispersed, neutralizing antibody binding is focused, with nearly all highly inhibitory mAbs (IC < 0.1 μg/mL) blocking receptor interaction, except for one that binds a unique epitope in the N-terminal domain. Many of these neutralizing mAbs use public V-genes and are close to germline. We dissect the structural basis of recognition for this large panel of antibodies through X-ray crystallography and cryoelectron microscopy of 19 Fab-antigen structures. We find novel binding modes for some potently inhibitory antibodies and demonstrate that strongly neutralizing mAbs protect, prophylactically or therapeutically, in animal models. | |||||||||
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