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List of bibliographic references

Number of relevant bibliographic references: 50.
[0-20] [0 - 20][0 - 50][20-40]
Ident.Authors (with country if any)Title
000F40 (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.
001119 (2013) Daniella Ishimaru [États-Unis] ; Ewan P. Plant ; Amy C. Sims ; Boyd L. Yount ; Braden M. Roth ; Nadukkudy V. Eldho ; Gabriela C. Pérez-Alvarado ; David W. Armbruster ; Ralph S. Baric ; Jonathan D. Dinman ; Deborah R. Taylor ; Mirko HennigRNA dimerization plays a role in ribosomal frameshifting of the SARS coronavirus.
001746 (2009) Tiancen Hu [République populaire de Chine] ; Yu Zhang ; Lianwei Li ; Kuifeng Wang ; Shuai Chen ; Jing Chen ; Jianping Ding ; Hualiang Jiang ; Xu ShenTwo adjacent mutations on the dimer interface of SARS coronavirus 3C-like protease cause different conformational changes in crystal structure.
001787 (2009) Zachary J. Miknis [États-Unis] ; Eric F. Donaldson ; Timothy C. Umland ; Ryan A. Rimmer ; Ralph S. Baric ; L Wayne SchultzSevere acute respiratory syndrome coronavirus nsp9 dimerization is essential for efficient viral growth.
001926 (2009) Yiu-Wing Kam [République populaire de Chine] ; Yuushi Okumura ; Hiroshi Kido ; Lisa F P. Ng ; Roberto Bruzzone ; Ralf AltmeyerCleavage of the SARS coronavirus spike glycoprotein by airway proteases enhances virus entry into human bronchial epithelial cells in vitro.
001968 (2008) Nan Zhong [République populaire de Chine] ; 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.
001974 (2008) Rajesh Ponnusamy [Allemagne] ; Ralf Moll ; Thomas Weimar ; Jeroen R. Mesters ; Rolf HilgenfeldVariable oligomerization modes in coronavirus non-structural protein 9.
001994 (2008) Isabelle Imbert [France] ; Eric J. Snijder ; Maria Dimitrova ; Jean-Claude Guillemot ; Patrick Lécine ; Bruno CanardThe SARS-Coronavirus PLnc domain of nsp3 as a replication/transcription scaffolding protein.
001A16 (2008) Mitsuhiro Takeda [Japon] ; Chung-Ke Chang ; Teppei Ikeya ; Peter Güntert ; Yuan-Hsiang Chang ; Yen-Lan Hsu ; Tai-Huang Huang ; Masatsune KainoshoSolution structure of the c-terminal dimerization domain of SARS coronavirus nucleocapsid protein solved by the SAIL-NMR method.
001A83 (2008) Shuai Chen ; Tiancen Hu ; Jian Zhang ; Jing Chen ; Kaixian Chen ; Jianping Ding ; Hualiang Jiang ; Xu ShenMutation of Gly-11 on the dimer interface results in the complete crystallographic dimer dissociation of severe acute respiratory syndrome coronavirus 3C-like protease: crystal structure with molecular dynamics simulations.
001A94 (2008) Jiahai Shi [Singapour] ; J. Sivaraman ; Jianxing SongMechanism for controlling the dimer-monomer switch and coupling dimerization to catalysis of the severe acute respiratory syndrome coronavirus 3C-like protease.
001C79 (2007) Chun-Yuan Chen [République populaire de Chine] ; Chung-Ke Chang ; Yi-Wei Chang ; Shih-Che Sue ; Hsin-I Bai ; Lilianty Riang ; Chwan-Deng Hsiao ; Tai-Huang HuangStructure of the SARS coronavirus nucleocapsid protein RNA-binding dimerization domain suggests a mechanism for helical packaging of viral RNA.
001D72 (2007) Kewen Zheng [République populaire de Chine] ; Guozheng Ma ; Jinming Zhou ; Min Zen ; Wenna Zhao ; Yongjun Jiang ; Qingsen Yu ; Jialiang FengInsight into the activity of SARS main protease: Molecular dynamics study of dimeric and monomeric form of enzyme.
001E39 (2007) Jeremiah S. Joseph [États-Unis] ; Kumar Singh Saikatendu ; Vanitha Subramanian ; Benjamin W. Neuman ; Michael J. Buchmeier ; Raymond C. Stevens ; Peter KuhnCrystal structure of a monomeric form of severe acute respiratory syndrome coronavirus endonuclease nsp15 suggests a role for hexamerization as an allosteric switch.
001F62 (2006) Jiahai Shi [Singapour] ; Jianxing SongThe catalysis of the SARS 3C-like protease is under extensive regulation by its extra domain.
002000 (2006) Wataru Kamitani [États-Unis] ; Krishna Narayanan ; Cheng Huang ; Kumari Lokugamage ; Tetsuro Ikegami ; Naoto Ito ; Hideyuki Kubo ; Shinji MakinoSevere acute respiratory syndrome coronavirus nsp1 protein suppresses host gene expression by promoting host mRNA degradation.
002030 (2006) Vito Graziano [États-Unis] ; William J. Mcgrath ; Lin Yang ; Walter F. MangelSARS CoV main proteinase: The monomer-dimer equilibrium dissociation constant.
002079 (2006) Hao Chen [République populaire de Chine] ; Ping Wei ; Changkang Huang ; Lei Tan ; Ying Liu ; Luhua LaiOnly one protomer is active in the dimer of SARS 3C-like proteinase.
002111 (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.
002119 (2006) Jennifer Barrila [États-Unis] ; Usman Bacha ; Ernesto FreireLong-range cooperative interactions modulate dimerization in SARS 3CLpro.
002203 (2006) Vito Graziano [États-Unis] ; William J. Mcgrath ; Ann Marie Degruccio ; John J. Dunn ; Walter F. MangelEnzymatic activity of the SARS coronavirus main proteinase dimer.

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