Serveur d'exploration SRAS - Curation (Ncbi)

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Peptidomimetics (pharmacology) < Peptidyl-Dipeptidase A < Peptidyl-Dipeptidase A (adverse effects)  Facettes :

List of bibliographic references

Number of relevant bibliographic references: 42.
[0-20] [0 - 20][0 - 42][20-40]
Ident.Authors (with country if any)Title
000500 (2004) Swee Kee Wong [États-Unis] ; Wenhui Li ; Michael J. Moore ; Hyeryun Choe ; Michael FarzanA 193-amino acid fragment of the SARS coronavirus S protein efficiently binds angiotensin-converting enzyme 2.
000505 (2003) Dimiter S. Dimitrov [États-Unis]The secret life of ACE2 as a receptor for the SARS virus.
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.
000867 (2004) Heike Hofmann [Allemagne] ; Martina Geier ; Andrea Marzi ; Mandy Krumbiegel ; Matthias Peipp ; Georg H. Fey ; Thomas Gramberg ; Stefan PöhlmannSusceptibility to SARS coronavirus S protein-driven infection correlates with expression of angiotensin converting enzyme 2 and infection can be blocked by soluble receptor.
000916 (2004) K F To [République populaire de Chine] ; Anthony W I. LoExploring the pathogenesis of severe acute respiratory syndrome (SARS): the tissue distribution of the coronavirus (SARS-CoV) and its putative receptor, angiotensin-converting enzyme 2 (ACE2).
000954 (2004) Paul K S. Chan [République populaire de Chine] ; Ka-Fai To ; Anthony W I. Lo ; Jo L K. Cheung ; Ida Chu ; Florence W L. Au ; Joanna H M. Tong ; John S. Tam ; Joseph J Y. Sung ; Ho-Keung NgPersistent infection of SARS coronavirus in colonic cells in vitro.
000A26 (2004) Rossa W K. Chiu [Hong Kong] ; Nelson L S. Tang ; David S C. Hui ; Grace T Y. Chung ; Stephen S C. Chim ; K C Allen Chan ; Ying-Man Sung ; Louis Y S. Chan ; Yu-Kwan Tong ; Wing-Shan Lee ; Paul K S. Chan ; Y M Dennis LoACE2 gene polymorphisms do not affect outcome of severe acute respiratory syndrome.
000A63 (2004) Yuchun Nie [République populaire de Chine] ; Peigang Wang ; Xuanling Shi ; Guangwen Wang ; Jian Chen ; Aihua Zheng ; Wei Wang ; Zai Wang ; Xiuxia Qu ; Min Luo ; Lei Tan ; Xijun Song ; Xiaolei Yin ; Jianguo Chen ; Mingxiao Ding ; Hongkui DengHighly infectious SARS-CoV pseudotyped virus reveals the cell tropism and its correlation with receptor expression.
000A74 (2004) Michael J. Moore [États-Unis] ; Tatyana Dorfman ; Wenhui Li ; Swee Kee Wong ; Yanhan Li ; Jens H. Kuhn ; James Coderre ; Natalya Vasilieva ; Zhongchao Han ; Thomas C. Greenough ; Michael Farzan ; Hyeryun ChoeRetroviruses pseudotyped with the severe acute respiratory syndrome coronavirus spike protein efficiently infect cells expressing angiotensin-converting enzyme 2.
000A80 (2004) Richard Y. Kao [République populaire de Chine] ; Wayne H W. Tsui ; Terri S W. Lee ; Julian A. Tanner ; Rory M. Watt ; Jian-Dong Huang ; Lihong Hu ; Guanhua Chen ; Zhiwei Chen ; Linqi Zhang ; Tian He ; Kwok-Hung Chan ; Herman Tse ; Amanda P C. To ; Louisa W Y. Ng ; Bonnie C W. Wong ; Hoi-Wah Tsoi ; Dan Yang ; David D. Ho ; Kwok-Yung YuenIdentification of novel small-molecule inhibitors of severe acute respiratory syndrome-associated coronavirus by chemical genetics.
000B29 (2004) Matthew J. Huentelman [États-Unis] ; Jasenka Zubcevic ; Jose A. Hernández Prada ; Xiaodong Xiao ; Dimiter S. Dimitrov ; Mohan K. Raizada ; David A. OstrovStructure-based discovery of a novel angiotensin-converting enzyme 2 inhibitor.
000B94 (2004) Yuxian He [États-Unis] ; Yusen Zhou [République populaire de Chine] ; Pamela Siddiqui [États-Unis] ; Shibo Jiang [États-Unis]Inactivated SARS-CoV vaccine elicits high titers of spike protein-specific antibodies that block receptor binding and virus entry
000C15 (2004) J H Kuhn [États-Unis] ; W. Li ; H. Choe ; M. FarzanAngiotensin-converting enzyme 2: a functional receptor for SARS coronavirus.
000D16 (2005) Zhi-Yong Yang [États-Unis] ; Heidi C. Werner ; Wing-Pui Kong ; Kwanyee Leung ; Elisabetta Traggiai ; Antonio Lanzavecchia ; Gary J. NabelEvasion of antibody neutralization in emerging severe acute respiratory syndrome coronaviruses.
000D21 (2005) K. Hattermann [Allemagne] ; M A Müller ; A. Nitsche ; S. Wendt ; O. Donoso Mantke ; M. NiedrigSusceptibility of different eukaryotic cell lines to SARS-coronavirus.
000D83 (2005) Zhiwei Chen ; Linqi Zhang ; Chuan Qin ; Lei Ba ; Christopher E. Yi ; Fengwen Zhang ; Qiang Wei ; Tian He ; Wenjie Yu ; Jian Yu ; Hong Gao ; Xinming Tu ; Agegnehu Gettie ; Michael Farzan ; Kwok-Yung Yuen ; David D. HoRecombinant Modified Vaccinia Virus Ankara Expressing the Spike Glycoprotein of Severe Acute Respiratory Syndrome Coronavirus Induces Protective Neutralizing Antibodies Primarily Targeting the Receptor Binding Region
000D98 (2005) Eric C. Mossel [États-Unis] ; Cheng Huang ; Krishna Narayanan ; Shinji Makino ; Robert B. Tesh ; C J PetersExogenous ACE2 expression allows refractory cell lines to support severe acute respiratory syndrome coronavirus replication.
000E62 (2005) Wenhui Li ; Chengsheng Zhang ; Jianhua Sui ; Jens H. Kuhn ; Michael J. Moore ; Shiwen Luo ; Swee-Kee Wong ; I-Chueh Huang ; Keming Xu ; Natalya Vasilieva ; Akikazu Murakami ; Yaqing He ; Wayne A. Marasco ; Yi Guan ; Hyeryun Choe ; Michael FarzanReceptor and viral determinants of SARS‐coronavirus adaptation to human ACE2
000F54 (2005) Heike Hofmann [Allemagne] ; Krzysztof Pyrc ; Lia Van Der Hoek ; Martina Geier ; Ben Berkhout ; Stefan PöhlmannHuman coronavirus NL63 employs the severe acute respiratory syndrome coronavirus receptor for cellular entry.

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