Serveur d'exploration SRAS - Curation (Ncbi)

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Peptide Hydrolases (analysis) < Peptide Hydrolases (chemistry) < Peptide Hydrolases (genetics)  Facettes :

List of bibliographic references

Number of relevant bibliographic references: 20.
Ident.Authors (with country if any)Title
000D14 (2005) Xue Wu Zhang [Hong Kong] ; Yee Leng Yap ; Ralf M. AltmeyerGeneration of predictive pharmacophore model for SARS-coronavirus main proteinase.
001703 (2006) Shutoku Matsuyama [Japon] ; Makoto Ujike ; Koji Ishii ; Shuetsu Fukushi ; Shigeru Morikawa ; Masato Tashiro ; Fumihiro TaguchiEnhancement of SARS-CoV infection by proteases.
001A50 (2007) Santhana G. Devaraj [États-Unis] ; Nan Wang ; Zhongbin Chen ; Zihong Chen ; Monica Tseng ; Naina Barretto ; Rongtuan Lin ; Clarence J. Peters ; Chien-Te K. Tseng ; Susan C. Baker ; Kui LiRegulation of IRF-3-dependent innate immunity by the papain-like protease domain of the severe acute respiratory syndrome coronavirus.
001B45 (2008) Xiaoyu Xue [République populaire de Chine] ; Hongwei Yu ; Haitao Yang ; Fei Xue ; Zhixin Wu ; Wei Shen ; Jun Li ; Zhe Zhou ; Yi Ding ; Qi Zhao ; Xuejun C. Zhang ; Ming Liao ; Mark Bartlam ; Zihe RaoStructures of two coronavirus main proteases: implications for substrate binding and antiviral drug design.
001B87 (2008) Nan Zhong ; Shengnan Zhang ; Peng Zou ; Jiaxuan Chen ; Xue Kang ; Zhe Li ; Chao Liang ; Changwen Jin ; Bin XiaWithout Its N-Finger, the Main Protease of Severe Acute Respiratory Syndrome Coronavirus Can Form a Novel Dimer through Its C-Terminal Domain▿
001D68 (2008) John Mark [Canada] ; Xuguang Li [Canada] ; Terry Cyr [Canada] ; Sylvie Fournier [Canada] ; Bozena Jaentschke [Canada] ; Mary Alice Hefford [Canada]SARS coronavirus: unusual lability of the nucleocapsid protein.
001D97 (2009) Jeffrey Anderson [États-Unis] ; Celia Schiffer ; Sook-Kyung Lee ; Ronald SwanstromViral protease inhibitors.
001E34 (2009) Chih-Jung Kuo ; Hun-Ge Liu ; Yueh-Kuei Lo ; Churl-Min Seong ; Kee-In Lee ; Young-Sik Jung ; Po-Huang LiangIndividual and common inhibitors of coronavirus and picornavirus main proteases
002400 (2011) Rima Chaudhuri [États-Unis] ; Sishi Tang [États-Unis] ; Guijun Zhao [États-Unis] ; Hui Lu [États-Unis] ; David A. Case [États-Unis] ; Michael E. Johnson [États-Unis]Comparison of SARS and NL63 Papain-Like Protease Binding Sites and Binding Site Dynamics: Inhibitor Design Implications
002447 (2012) Hyun Lee [États-Unis] ; Jaime Torres ; Lena Truong ; Rima Chaudhuri ; Anuradha Mittal ; Michael E. JohnsonReducing agents affect inhibitory activities of compounds: results from multiple drug targets.
002751 (2013) Christopher C. Stobart ; Nicole R. Sexton ; Havisha Munjal ; Xiaotao Lu ; Katrina L. Molland ; Sakshi Tomar ; Andrew D. Mesecar ; Mark R. DenisonChimeric Exchange of Coronavirus nsp5 Proteases (3CLpro) Identifies Common and Divergent Regulatory Determinants of Protease Activity
002839 (2014) Yahira M. Báez-Santos [États-Unis] ; Scott J. Barraza ; Michael W. Wilson ; Michael P. Agius ; Anna M. Mielech ; Nicole M. Davis ; Susan C. Baker ; Scott D. Larsen ; Andrew D. MesecarX-ray structural and biological evaluation of a series of potent and highly selective inhibitors of human coronavirus papain-like proteases.
002849 (2014) Xiaojuan Chen [République populaire de Chine] ; Xingxing Yang ; Yang Zheng ; Yudong Yang ; Yaling Xing ; Zhongbin ChenSARS coronavirus papain-like protease inhibits the type I interferon signaling pathway through interaction with the STING-TRAF3-TBK1 complex.
002925 (2014) Rolf HilgenfeldFrom SARS to MERS: crystallographic studies on coronaviral proteases enable antiviral drug design
002945 (2014) Yahira M. Báez-Santos [États-Unis] ; Anna M. Mielech [États-Unis] ; Xufang Deng [États-Unis] ; Susan Baker [États-Unis] ; Andrew D. Mesecar [États-Unis]Catalytic function and substrate specificity of the papain-like protease domain of nsp3 from the Middle East respiratory syndrome coronavirus.
002C18 (2016) Fenghua Wang [République populaire de Chine] ; Cheng Chen [République populaire de Chine] ; Wenjie Tan [République populaire de Chine] ; Kailin Yang [États-Unis] ; Haitao Yang [République populaire de Chine]Structure of Main Protease from Human Coronavirus NL63: Insights for Wide Spectrum Anti-Coronavirus Drug Design
002C50 (2016) Gang Ye [République populaire de Chine] ; Feng Deng [République populaire de Chine] ; Zhou Shen [République populaire de Chine] ; Rui Luo [République populaire de Chine] ; Ling Zhao [République populaire de Chine] ; Shaobo Xiao [République populaire de Chine] ; Zhen F. Fu [République populaire de Chine, États-Unis] ; Guiqing Peng [République populaire de Chine]Structural basis for the dimerization and substrate recognition specificity of porcine epidemic diarrhea virus 3C-like protease
002C69 (2016) Vathan Kumar [Taïwan] ; Kian-Pin Tan [Taïwan] ; Ying-Ming Wang [Taïwan] ; Sheng-Wei Lin [Taïwan] ; Po-Huang Liang [Taïwan]Identification, synthesis and evaluation of SARS-CoV and MERS-CoV 3C-like protease inhibitors.
002E92 (2018) Min-Han Lin [Taïwan] ; David C. Moses [Taïwan] ; Chih-Hua Hsieh [Taïwan] ; Shu-Chun Cheng [Taïwan] ; Yau-Hung Chen [Taïwan] ; Chiao-Yin Sun [Taïwan] ; Chi-Yuan Chou [Taïwan]Disulfiram can inhibit MERS and SARS coronavirus papain-like proteases via different modes.
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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