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Similitude de séquences < Similitude de séquences d'acides aminés < Similitude de séquences d'acides nucléiques  Facettes :

List of bibliographic references indexed by Similitude de séquences d'acides aminés

Number of relevant bibliographic references: 86.
[0-50] [0 - 20][0 - 50][50-70]
Ident.Authors (with country if any)Title
000795 (2020) B. Robson [États-Unis, Royaume-Uni]Computers and viral diseases. Preliminary bioinformatics studies on the design of a synthetic vaccine and a preventative peptidomimetic antagonist against the SARS-CoV-2 (2019-nCoV, COVID-19) coronavirus
000991 (2020) Abdo A. ElfikyAnti-HCV, nucleotide inhibitors, repurposing against COVID-19
000C18 (2018) Daniela Niemeyer [Allemagne] ; Kirstin Mösbauer [Allemagne] ; Eva M. Klein [Allemagne] ; Andrea Sieberg [Allemagne] ; Robert C. Mettelman [États-Unis] ; Anna M. Mielech [États-Unis] ; Ronald Dijkman [Suisse] ; Susan C. Baker [États-Unis] ; Christian Drosten [Allemagne] ; Marcel A. Müller [Allemagne]The papain-like protease determines a virulence trait that varies among members of the SARS-coronavirus species
000C70 (2018) Anjun Zheng ; Yuejun Shi [République populaire de Chine] ; Zhou Shen ; Gang Wang ; Jiale Shi ; Qiqi Xiong [République populaire de Chine] ; Liurong Fang ; Shaobo Xiao ; Zhen F. Fu ; Guiqing PengInsight into the evolution of nidovirus endoribonuclease based on the finding that nsp15 from porcine Deltacoronavirus functions as a dimer
000F74 (2016) James Brett Case [États-Unis] ; Alison W. Ashbrook [États-Unis] ; Terence S. Dermody [États-Unis] ; Mark R. Denison [États-Unis]Mutagenesis of S-Adenosyl-l-Methionine-Binding Residues in Coronavirus nsp14 N7-Methyltransferase Demonstrates Differing Requirements for Genome Translation and Resistance to Innate Immunity.
000F99 (2016) Xin Hu [États-Unis] ; Jaimee R. Compton [États-Unis] ; Dagmar H. Leary [États-Unis] ; Mark A. Olson [États-Unis] ; Michael S. Lee [États-Unis] ; Jonah Cheung [États-Unis] ; Wenjuan Ye [États-Unis] ; Mark Ferrer [États-Unis] ; Noel Southall [États-Unis] ; Ajit Jadhav [États-Unis] ; Elaine M. Morazzani [États-Unis] ; Pamela J. Glass [États-Unis] ; Juan Marugan [États-Unis] ; Patricia M. Legler [États-Unis]Kinetic, Mutational, and Structural Studies of the Venezuelan Equine Encephalitis Virus Nonstructural Protein 2 Cysteine Protease.
001206 (2015) Arthur Weininger [Canada] ; Susan Weininger [Canada]Using common spatial distributions of atoms to relate functionally divergent influenza virus N10 and N11 protein structures to functionally characterized neuraminidase structures, toxin cell entry domains, and non-influenza virus cell entry domains.
001237 (2015) Danielle Needle [États-Unis] ; George T. Lountos [États-Unis] ; David S. Waugh [États-Unis]Structures of the Middle East respiratory syndrome coronavirus 3C-like protease reveal insights into substrate specificity.
001241 (2015) Yuanyuan Ma [République populaire de Chine] ; Lijie Wu [République populaire de Chine] ; Neil Shaw [République populaire de Chine] ; Yan Gao [République populaire de Chine] ; Jin Wang [République populaire de Chine] ; Yuna Sun [République populaire de Chine] ; Zhiyong Lou [République populaire de Chine] ; Liming Yan [République populaire de Chine] ; Rongguang Zhang [République populaire de Chine] ; Zihe Rao [République populaire de Chine]Structural basis and functional analysis of the SARS coronavirus nsp14-nsp10 complex.
001322 (2015) Simon Henriet [Norvège] ; Sara Sumic [Norvège] ; Carlette Doufoundou-Guilengui [Norvège] ; Marit Flo Jensen [Norvège] ; Camille Grandmougin [Norvège] ; Kateryna Fal [Norvège] ; Eric Thompson [Norvège] ; Jean-Nicolas Volff [France] ; Daniel Chourrout [Norvège]Embryonic expression of endogenous retroviral RNAs in somatic tissues adjacent to the Oikopleura germline.
001566 (2014) Yan Li [Singapour] ; Wahyu Surya ; Stephanie Claudine ; Jaume TorresStructure of a conserved Golgi complex-targeting signal in coronavirus envelope proteins.
001567 (2014) Chi-Yuan Chou [Taïwan] ; Hsing-Yi Lai [Taïwan] ; Hung-Yi Chen [Taïwan] ; Shu-Chun Cheng [Taïwan] ; Kai-Wen Cheng [Taïwan] ; Ya-Wen Chou [Taïwan]Structural basis for catalysis and ubiquitin recognition by the severe acute respiratory syndrome coronavirus papain-like protease.
001652 (2014) Adeyemi O. Adedeji [États-Unis] ; Kamalendra Singh [États-Unis] ; Ademola Kassim [États-Unis] ; Christopher M. Coleman [États-Unis] ; Ruth Elliott [États-Unis] ; Susan R. Weiss [États-Unis] ; Matthew B. Frieman [États-Unis] ; Stefan G. Sarafianos [États-Unis]Evaluation of SSYA10-001 as a replication inhibitor of severe acute respiratory syndrome, mouse hepatitis, and Middle East respiratory syndrome coronaviruses.
001857 (2013) C. Reusken [Pays-Bas] ; H. Mou ; G J Godeke ; L. Van Der Hoek ; B. Meyer ; M A Müller ; B. Haagmans ; R. De Sousa ; N. Schuurman ; U. Dittmer ; P. Rottier ; A. Osterhaus ; C. Drosten ; B J Bosch ; M. KoopmansSpecific serology for emerging human coronaviruses by protein microarray.
001901 (2013) Saskia L. Smits [Pays-Bas] ; V. Stalin Raj [Pays-Bas] ; Minoushka D. Oduber [Pays-Bas] ; Claudia M. E. Schapendonk [Pays-Bas] ; Rogier Bodewes [Pays-Bas] ; Lisette Provacia [Pays-Bas] ; Koert J. Stittelaar [Pays-Bas] ; Albert D. M. E. Osterhaus [Pays-Bas] ; Bart L. Haagmans [Pays-Bas]Metagenomic Analysis of the Ferret Fecal Viral Flora
001943 (2013) Mehdi R M. Bidokhti [Suède] ; Madeleine Tr Vén [Suède] ; Neel K. Krishna [États-Unis] ; Muhammad Munir [Suède] ; Sándor Belák [Suède] ; Stefan Alenius [Suède] ; Martí Cortey [Royaume-Uni]Evolutionary dynamics of bovine coronaviruses: natural selection pattern of the spike gene implies adaptive evolution of the strains.
001C41 (2012) Aartjan J W. Te Velthuis [Pays-Bas] ; Sjoerd H E. Van Den Worm ; Eric J. SnijderThe SARS-coronavirus nsp7+nsp8 complex is a unique multimeric RNA polymerase capable of both de novo initiation and primer extension.
001D18 (2012) Sander Van Boheemen ; Miranda De Graaf ; Chris Lauber ; Theo M. Bestebroer ; V. Stalin Raj ; Ali Moh Zaki ; Albert D. M. E. Osterhaus ; Bart L. Haagmans ; Alexander E. Gorbalenya ; Eric J. Snijder ; Ron A. M. FouchierGenomic Characterization of a Newly Discovered Coronavirus Associated with Acute Respiratory Distress Syndrome in Humans
001D24 (2012) Jean Kaoru Millet [République populaire de Chine] ; François Kien ; Chung-Yan Cheung ; Yu-Lam Siu ; Wing-Lim Chan ; Huiying Li ; Hiu-Lan Leung ; Martial Jaume ; Roberto Bruzzone ; Joseph S Malik Peiris ; Ralf Marius Altmeyer ; Béatrice NalEzrin interacts with the SARS coronavirus Spike protein and restrains infection at the entry stage.
001D60 (2012) Peng Zhou [République populaire de Chine] ; Hongxia Li [République populaire de Chine] ; Hanzhong Wang [République populaire de Chine] ; Lin-Fa Wang [Australie] ; Zhengli Shi [République populaire de Chine]Bat severe acute respiratory syndrome-like coronavirus ORF3b homologues display different interferon antagonist activities.
002142 (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
002483 (2010) Justyna A. Wojdyla [Allemagne] ; Ioannis Manolaridis ; Puck B. Van Kasteren ; Marjolein Kikkert ; Eric J. Snijder ; Alexander E. Gorbalenya ; Paul A. TuckerPapain-like protease 1 from transmissible gastroenteritis virus: crystal structure and enzymatic activity toward viral and cellular substrates.
002496 (2010) Jennifer Barrila [États-Unis] ; Sandra B. Gabelli ; Usman Bacha ; L Mario Amzel ; Ernesto FreireMutation of Asn28 disrupts the dimerization and enzymatic activity of SARS 3CL(pro) .
002586 (2010) Kelley R. Hurst [États-Unis] ; Rong Ye ; Scott J. Goebel ; Priya Jayaraman ; Paul S. MastersAn interaction between the nucleocapsid protein and a component of the replicase-transcriptase complex is crucial for the infectivity of coronavirus genomic RNA.
002588 (2010) Corrin E. Mcbride [États-Unis] ; Carolyn E. MachamerA single tyrosine in the severe acute respiratory syndrome coronavirus membrane protein cytoplasmic tail is important for efficient interaction with spike protein.
002962 (2009) Hsiang-I. Liao ; C. Anders Olson [États-Unis] ; Seungmin Hwang ; Hongyu Deng ; Elaine Wong ; Ralph S. Baric ; Richard W. Roberts ; Ren SunmRNA Display Design of Fibronectin-based Intrabodies That Detect and Inhibit Severe Acute Respiratory Syndrome Coronavirus Nucleocapsid Protein*
002A58 (2009) Tais A P F. Pimentel [États-Unis] ; Zhe Yan ; Scott A. Jeffers ; Kathryn V. Holmes ; Robert S. Hodges ; Peter BurkhardPeptide nanoparticles as novel immunogens: design and analysis of a prototypic severe acute respiratory syndrome vaccine.
002B53 (2009) Nicholas E. Grossoehme [États-Unis] ; Lichun Li ; Sarah C. Keane ; Pinghua Liu ; Charles E. Dann ; Julian L. Leibowitz ; David P. GiedrocCoronavirus N protein N-terminal domain (NTD) specifically binds the transcriptional regulatory sequence (TRS) and melts TRS-cTRS RNA duplexes.
002B85 (2009) Lili Xu [République populaire de Chine] ; Yanfang Zhang [République populaire de Chine] ; Yun Liu [République populaire de Chine] ; Zhiwei Chen ; Hongkui Deng [République populaire de Chine] ; Zhongbin Ma [République populaire de Chine] ; Hualin Wang [République populaire de Chine] ; Zhihong Hu [République populaire de Chine] ; Fei Deng [République populaire de Chine]Angiotensin-converting enzyme 2 (ACE2) from raccoon dog can serve as an efficient receptor for the spike protein of severe acute respiratory syndrome coronavirus.
002B91 (2009) Yoshiyuki Yamada [Singapour] ; Xiao Bo Liu ; Shou Guo Fang ; Felicia P L. Tay ; Ding Xiang LiuAcquisition of cell-cell fusion activity by amino acid substitutions in spike protein determines the infectivity of a coronavirus in cultured cells.
002F84 (2008) Scott R. Schaecher [États-Unis] ; Michael S. Diamond ; Andrew PekoszThe transmembrane domain of the severe acute respiratory syndrome coronavirus ORF7b protein is necessary and sufficient for its retention in the Golgi complex.
003002 (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.
003044 (2008) Yunxin Chen [République populaire de Chine] ; Li Liu ; Qiang Wei ; Hua Zhu ; Hong Jiang ; Xinming Tu ; Chuan Qin ; Zhiwei ChenRhesus angiotensin converting enzyme 2 supports entry of severe acute respiratory syndrome coronavirus in Chinese macaques.
003061 (2008) K-Y Hwa [Taïwan] ; W M Lin ; Y-I Hou ; T-M YehPeptide mimicrying between SARS coronavirus spike protein and human proteins reacts with SARS patient serum.
003160 (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.
003570 (2007) Chih-Fong Chou [Singapour] ; Shuo Shen ; Geetha Mahadevappa ; Seng Gee Lim ; Wanjin Hong ; Yee-Joo TanThe use of hepatitis C virus NS3/4A and secreted alkaline phosphatase to quantitate cell-cell membrane fusion mediated by severe acute respiratory syndrome coronavirus S protein and the receptor angiotensin-converting enzyme 2.
003612 (2007) Kumar Singh Saikatendu ; Jeremiah S. Joseph ; Vanitha Subramanian ; Benjamin W. Neuman ; Michael J. Buchmeier ; Raymond C. Stevens ; Peter KuhnRibonucleocapsid Formation of Severe Acute Respiratory Syndrome Coronavirus through Molecular Action of the N-Terminal Domain of N Protein▿
003C76 (2006) Brian Tripet [États-Unis] ; Daniel J. Kao ; Scott A. Jeffers ; Kathryn V. Holmes ; Robert S. HodgesTemplate-based coiled-coil antigens elicit neutralizing antibodies to the SARS-coronavirus.
003C90 (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.
003E20 (2006) Jaume Torres [Singapour] ; Krupakar Parthasarathy ; Xin Lin ; Rathi Saravanan ; Andreas Kukol ; Ding Xiang LiuModel of a putative pore: the pentameric alpha-helical bundle of SARS coronavirus E protein in lipid bilayers.
003E93 (2006) Wuze Ren [République populaire de Chine] ; Wendong Li ; Meng Yu ; Pei Hao ; Yuan Zhang ; Peng Zhou ; Shuyi Zhang ; Guoping Zhao ; Yang Zhong ; Shengyue Wang ; Lin-Fa Wang ; Zhengli ShiFull-length genome sequences of two SARS-like coronaviruses in horseshoe bats and genetic variation analysis.
003F26 (2006) Naina Barretto [États-Unis] ; Dalia Jukneliene ; Kiira Ratia ; Zhongbin Chen ; Andrew D. Mesecar ; Susan C. BakerDeubiquitinating activity of the SARS-CoV papain-like protease.
003F34 (2006) I-Mei Yu [États-Unis] ; Michael L. Oldham ; Jingqiang Zhang ; Jue ChenCrystal structure of the severe acute respiratory syndrome (SARS) coronavirus nucleocapsid protein dimerization domain reveals evolutionary linkage between corona- and arteriviridae.
003F35 (2006) Stefano Ricagno ; Marie-Pierre Egloff ; Rachel Ulferts [Royaume-Uni] ; Bruno Coutard ; Didier Nurizzo [France] ; Valérie Campanacci [France] ; Christian Cambillau [France] ; John Ziebuhr [Royaume-Uni] ; Bruno CanardCrystal structure and mechanistic determinants of SARS coronavirus nonstructural protein 15 define an endoribonuclease family
003F59 (2006) Po-Huang Liang [Taïwan]Characterization and inhibition of SARS-coronavirus main protease.
003F63 (2006) Zhe Yan [États-Unis] ; Brian Tripet ; Robert S. HodgesBiophysical characterization of HRC peptide analogs interaction with heptad repeat regions of the SARS-coronavirus Spike fusion protein core.
004616 (2005) Yeeleng Yap [France] ; Xuewu Zhang ; Anton Andonov ; Runtao HeStructural analysis of inhibition mechanisms of aurintricarboxylic acid on SARS-CoV polymerase and other proteins.
004657 (2005) Gordana M. Pavlovi Lažeti ; Nenad S. Miti ; Andrija M. Tomovi [Suisse] ; Mirjana D. Pavlovi ; Miloš V. BeljanskiSARS-CoV Genome Polymorphism: A Bioinformatics Study
004726 (2005) Xiaonan Fang [République populaire de Chine] ; Linbai Ye ; Khalid Amine Timani ; Shanshan Li ; Yingchun Zen ; Meng Zhao ; Hong Zheng ; Zhenghui WuPeptide domain involved in the interaction between membrane protein and nucleocapsid protein of SARS-associated coronavirus.
004757 (2005) Biao Kan ; Ming Wang ; Huaiqi Jing ; Huifang Xu ; Xiugao Jiang ; Meiying Yan ; Weili Liang ; Han Zheng ; Kanglin Wan ; Qiyong Liu ; Buyun Cui ; Yanmei Xu ; Enmin Zhang ; Hongxia Wang ; Jingrong Ye ; Guichang Li ; Machao Li ; Zhigang Cui ; Xiaobao Qi ; Kai Chen ; Lin Du ; Kai Gao ; Yu-Teng Zhao ; Xiao-Zhong Zou ; Yue-Ju Feng ; Yu-Fan Gao ; Rong Hai ; Dongzhen Yu ; Yi Guan ; Jianguo XuMolecular Evolution Analysis and Geographic Investigation of Severe Acute Respiratory Syndrome Coronavirus-Like Virus in Palm Civets at an Animal Market and on Farms‡
004C61 (2005) Tswen-Kei Tang ; Mark P. Wu ; Shui-Tsung Chen ; Ming-Hon Hou ; Ming-Hsiang Hong ; Fu-Ming Pan ; Hui-Ming Yu ; Jenn-Han Chen [Taïwan] ; Chen-Wen Yao [Taïwan] ; Andrew H. Wang [Taïwan]Biochemical and immunological studies of nucleocapsid proteins of severe acute respiratory syndrome and 229E human coronaviruses

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