Serveur d'exploration SRAS - Curation (Ncbi)

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Receptors, Virus (biosynthesis) < Receptors, Virus (chemistry) < Receptors, Virus (deficiency)  Facettes :

List of bibliographic references

Number of relevant bibliographic references: 26.
[0-20] [0 - 20][0 - 26][20-25][20-40]
Ident.Authors (with country if any)Title
000502 (2004) Hideka S. Miura [Japon] ; Keiko Nakagaki ; Fumihiro TaguchiN-terminal domain of the murine coronavirus receptor CEACAM1 is responsible for fusogenic activation and conformational changes of the spike protein.
000546 (2004) Ponraj Prabakaran [États-Unis] ; Xiaodong Xiao ; Dimiter S. DimitrovA model of the ACE2 structure and function as a SARS-CoV receptor.
000591 (2004) Paul Towler [États-Unis] ; Bart Staker ; Sridhar G. Prasad ; Saurabh Menon ; Jin Tang ; Thomas Parsons ; Dominic Ryan ; Martin Fisher ; David Williams ; Natalie A. Dales ; Michael A. Patane ; Michael W. PantolianoACE2 X-ray structures reveal a large hinge-bending motion important for inhibitor binding and catalysis.
000602 (2004) Peigang Wang [République populaire de Chine] ; Jian Chen ; Aihua Zheng ; Yuchun Nie ; Xuanling Shi ; Wei Wang ; Guangwen Wang ; Min Luo ; Huijun Liu ; Lei Tan ; Xijun Song ; Zai Wang ; Xiaolei Yin ; Xiuxia Qu ; Xiaojing Wang ; Tingting Qing ; Mingxiao Ding ; Hongkui DengExpression cloning of functional receptor used by SARS coronavirus.
001026 (2005) Yuan Zhang [République populaire de Chine] ; Nan Zheng ; Pei Hao ; Ying Cao ; Yang ZhongA molecular docking model of SARS-CoV S1 protein in complex with its receptor, human ACE2.
001162 (2005) Kathryn V. Holmes [États-Unis]Structural biology. Adaptation of SARS coronavirus to humans.
001163 (2005) Fang Li [États-Unis] ; Wenhui Li ; Michael Farzan ; Stephen C. HarrisonStructure of SARS coronavirus spike receptor-binding domain complexed with receptor.
001446 (2006) Ponraj Prabakaran [États-Unis] ; Jianhua Gan ; Yang Feng ; Zhongyu Zhu ; Vidita Choudhry ; Xiaodong Xiao ; Xinhua Ji ; Dimiter S. DimitrovStructure of severe acute respiratory syndrome coronavirus receptor-binding domain complexed with neutralizing antibody.
001455 (2006) Wenhui Li [États-Unis] ; Swee-Kee Wong ; Fang Li ; Jens H. Kuhn ; I-Chueh Huang ; Hyeryun Choe ; Michael FarzanAnimal origins of the severe acute respiratory syndrome coronavirus: insight from ACE2-S-protein interactions.
001556 (2006) Fang Li [États-Unis] ; Marcelo Berardi ; Wenhui Li ; Michael Farzan ; Philip R. Dormitzer ; Stephen C. HarrisonConformational states of the severe acute respiratory syndrome coronavirus spike protein ectodomain.
001706 (2006) Shuetsu Fukushi [Japon] ; Tetsuya Mizutani ; Masayuki Saijo ; Shutoku Matsuyama ; Fumihiro Taguchi ; Ichiro Kurane ; Shigeru MorikawaPseudotyped vesicular stomatitis virus for functional analysis of SARS coronavirus spike protein.
001904 (2007) Yuan Zhang [République populaire de Chine] ; Nan Zheng [Japon] ; Peng Nan [République populaire de Chine] ; Ying Cao [Japon] ; Masami Hasegawa [Japon] ; Yang Zhong [République populaire de Chine]Computational simulation of interactions between SARS coronavirus spike mutants and host species-specific receptors
001B59 (2008) Megan W. Howard [États-Unis] ; Emily A. Travanty ; Scott A. Jeffers ; M K Smith ; Sonia T. Wennier ; Larissa B. Thackray ; Kathryn V. HolmesAromatic amino acids in the juxtamembrane domain of severe acute respiratory syndrome coronavirus spike glycoprotein are important for receptor-dependent virus entry and cell-cell fusion.
001C41 (2008) Fang Li [États-Unis]Structural Analysis of Major Species Barriers between Humans and Palm Civets for Severe Acute Respiratory Syndrome Coronavirus Infections▿
001C85 (2008) Timothy Sheahan ; Barry Rockx ; Eric Donaldson ; Davide Corti ; Ralph BaricPathways of Cross-Species Transmission of Synthetically Reconstructed Zoonotic Severe Acute Respiratory Syndrome Coronavirus▿
002444 (2012) Kailang Wu ; Guiqing Peng ; Matthew Wilken ; Robert J. Geraghty [États-Unis] ; Fang LiMechanisms of Host Receptor Adaptation by Severe Acute Respiratory Syndrome Coronavirus*
002706 (2013) Guangwen Lu [République populaire de Chine] ; Yawei Hu ; Qihui Wang ; Jianxun Qi ; Feng Gao ; Yan Li ; Yanfang Zhang ; Wei Zhang ; Yuan Yuan ; Jinku Bao ; Buchang Zhang ; Yi Shi ; Jinghua Yan ; George F. GaoMolecular basis of binding between novel human coronavirus MERS-CoV and its receptor CD26.
002800 (2013) Nan Zhou ; Yun Zhang ; Jin-Chun Zhang ; Ling Feng ; Jin-Ku BaoThe receptor binding domain of MERS-CoV: The dawn of vaccine and treatment development
002D16 (2016) R. J. G. Hulswit ; C. A. M. De Haan ; B.-J. BoschCoronavirus Spike Protein and Tropism Changes
002F56 (2018) Wenfei Song [République populaire de Chine] ; Miao Gui [République populaire de Chine] ; Xinquan Wang [République populaire de Chine] ; Ye Xiang [République populaire de Chine]Cryo-EM structure of the SARS coronavirus spike glycoprotein in complex with its host cell receptor ACE2.
002F82 (2018) Robert N. Kirchdoerfer [États-Unis] ; Nianshuang Wang [États-Unis] ; Jesper Pallesen [États-Unis] ; Daniel Wrapp [États-Unis] ; Hannah L. Turner [États-Unis] ; Christopher A. Cottrell [États-Unis] ; Kizzmekia S. Corbett [États-Unis] ; Barney S. Graham [États-Unis] ; Jason S. Mclellan [États-Unis] ; Andrew B. Ward [États-Unis]Stabilized coronavirus spikes are resistant to conformational changes induced by receptor recognition or proteolysis

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