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List of bibliographic references

Number of relevant bibliographic references: 23.
[0-20] [0 - 20][0 - 23][20-22][20-40]
Ident.Authors (with country if any)Title
000785 (2020) Abdo A. Elfiky [Arabie saoudite]Anti-HCV, nucleotide inhibitors, repurposing against COVID-19.
000B94 (2016) Luis G M. Basso [Brésil] ; Eduardo F. Vicente [Brésil] ; Edson Crusca [Brésil] ; Eduardo M. Cilli [Brésil] ; Antonio J. Costa-Filho [Brésil]SARS-CoV fusion peptides induce membrane surface ordering and curvature.
000D83 (2015) Mukesh Mahajan [Singapour] ; Surajit Bhattacharjya [Singapour]NMR structures and localization of the potential fusion peptides and the pre-transmembrane region of SARS-CoV: Implications in membrane fusion.
001069 (2013) Abid Qureshi ; Nishant Thakur ; Manoj Kumar [Inde]VIRsiRNApred: a web server for predicting inhibition efficacy of siRNAs targeting human viruses.
001540 (2011) Suzanne N. Stammler [États-Unis] ; Song Cao ; Shi-Jie Chen ; David P. GiedrocA conserved RNA pseudoknot in a putative molecular switch domain of the 3'-untranslated region of coronaviruses is only marginally stable.
001698 (2010) Yantao Chen [République populaire de Chine] ; Mingliang Wang ; Qianling Zhang ; Jianhong LiuConstruction of an implicit membrane environment for the lattice Monte Carlo simulation of transmembrane protein.
001754 (2009) Huey-Jen Fang [Taïwan] ; Yong-Zhong Chen ; Mai Suan Li ; Ming-Chya Wu ; Chun-Ling Chang ; Chung-Ke Chang ; Yen-Lan Hsu ; Tai-Huang Huang ; Hueih-Min Chen ; Tian-Yow Tsong ; Chin-Kun HuThermostability of the N-terminal RNA-binding domain of the SARS-CoV nucleocapsid protein: experiments and numerical simulations.
001917 (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.
001A55 (2008) Alex G. Taranto [Brésil] ; Paulo Carvalho ; Mitchell A. AveryQM/QM studies for Michael reaction in coronavirus main protease (3CL Pro).
001B29 (2008) Ling-Hon Matthew Chu [République populaire de Chine] ; Siu-Hong Chan ; Sau-Na Tsai ; Yi Wang ; Christopher Hon-Ki Cheng ; Kam-Bo Wong ; Mary Miu-Yee Waye ; Sai-Ming NgaiFusion core structure of the severe acute respiratory syndrome coronavirus (SARS-CoV): in search of potent SARS-CoV entry inhibitors.
001E67 (2007) Ping Chen [République populaire de Chine] ; Miao Jiang ; Tao Hu ; Qingzhen Liu ; Xiaojiang S. Chen ; Deyin GuoBiochemical characterization of exoribonuclease encoded by SARS coronavirus.
001F42 (2006) Marcin Hoffmann [Pologne] ; Krystian Eitner ; Marcin Von Grotthuss ; Leszek Rychlewski ; Ewa Banachowicz ; Tomasz Grabarkiewicz ; Tomasz Szkoda ; Andrzej KolinskiThree dimensional model of severe acute respiratory syndrome coronavirus helicase ATPase catalytic domain and molecular design of severe acute respiratory syndrome coronavirus helicase inhibitors.
001F79 (2006) Yiqun Deng [États-Unis] ; Jie Liu ; Qi Zheng ; Wei Yong ; Min LuStructures and polymorphic interactions of two heptad-repeat regions of the SARS virus S2 protein.
002243 (2006) Rebecca L. Stoermer [États-Unis] ; Kristin B. Cederquist ; Sean K. Mcfarland ; Michael Y. Sha ; Sharron G. Penn ; Christine D. KeatingCoupling molecular beacons to barcoded metal nanowires for multiplexed, sealed chamber DNA bioassays.
002246 (2006) Qi Zheng [États-Unis] ; Yiqun Deng ; Jie Liu ; Lia Van Der Hoek ; Ben Berkhout ; Min LuCore structure of S2 from the human coronavirus NL63 spike glycoprotein.
002491 (2005) Shuai Chen [République populaire de Chine] ; Lili Chen ; Jinzhi Tan ; Jing Chen ; Li Du ; Tao Sun ; Jianhua Shen ; Kaixian Chen ; Hualiang Jiang ; Xu ShenSevere acute respiratory syndrome coronavirus 3C-like proteinase N terminus is indispensable for proteolytic activity but not for enzyme dimerization. Biochemical and thermodynamic investigation in conjunction with molecular dynamics simulations.
002705 (2005) Changying Yu [République populaire de Chine] ; Chunshan Gui ; Haibin Luo ; Lili Chen ; Liang Zhang ; Hao Yu ; Sheng Yang ; Weihong Jiang ; Jianhua Shen ; Xu Shen ; Hualiang JiangFolding of the SARS coronavirus spike glycoprotein immunological fragment (SARS_S1b): thermodynamic and kinetic investigation correlating with three-dimensional structural modeling.
002804 (2005) Stéphane Duquerroy [France] ; Armelle Vigouroux ; Peter J M. Rottier ; Félix A. Rey ; Berend Jan BoschCentral ions and lateral asparagine/glutamine zippers stabilize the post-fusion hairpin conformation of the SARS coronavirus spike glycoprotein.
002C09 (2004) Yulong Wang [République populaire de Chine] ; Xiaoyu Wu ; Yihua Wang ; Bing Li ; Hao Zhou ; Guiyong Yuan ; Yan Fu ; Yongzhang LuoLow stability of nucleocapsid protein in SARS virus.
002C61 (2004) Usman Bacha [États-Unis] ; Jennifer Barrila ; Adrian Velazquez-Campoy ; Stephanie A. Leavitt ; Ernesto FreireIdentification of novel inhibitors of the SARS coronavirus main protease 3CLpro.
002C74 (2004) Arezki Azzi [Canada] ; Sheng-Xiang LinHuman SARS-coronavirus RNA-dependent RNA polymerase: activity determinants and nucleoside analogue inhibitors.

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