Serveur d'exploration SRAS - Curation (Ncbi)

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SARS Virus (drug effects) < SARS Virus (enzymology) < SARS Virus (genetics)  Facettes :

List of bibliographic references

Number of relevant bibliographic references: 221.
[20-40] [0 - 20][0 - 50][40-60]
Ident.Authors (with country if any)Title
000A28 (2004) Erik Prentice [États-Unis] ; Josephine Mcauliffe ; Xiaotao Lu ; Kanta Subbarao ; Mark R. DenisonIdentification and characterization of severe acute respiratory syndrome coronavirus replicase proteins.
000A65 (2004) Rajendram V. Rajnarayanan [États-Unis] ; Sivanesan Dakshanamurthy ; Nagarajan Pattabiraman"Teaching old drugs to kill new bugs": structure-based discovery of anti-SARS drugs.
000A67 (2004) John T-A Hsu [République populaire de Chine] ; Chih-Jung Kuo ; Hsing-Pang Hsieh ; Yeau-Ching Wang ; Kuo-Kuei Huang ; Coney P-C Lin ; Ping-Fang Huang ; Xin Chen ; Po-Huang LiangEvaluation of metal-conjugated compounds as inhibitors of 3CL protease of SARS-CoV.
000A68 (2004) Cheng-Wen Lin [République populaire de Chine] ; Chang-Hai Tsai ; Fuu-Jen Tsai ; Pei-Jer Chen ; Chien-Chen Lai ; Lei Wan ; Hua-Hao Chiu ; Kuan-Hsun LinCharacterization of trans- and cis-cleavage activity of the SARS coronavirus 3CLpro protease: basis for the in vitro screening of anti-SARS drugs.
000B25 (2004) Jan E. Blanchard [Canada] ; Nadine H. Elowe ; Carly Huitema ; Pascal D. Fortin ; Jonathan D. Cechetto ; Lindsay D. Eltis ; Eric D. BrownHigh-throughput screening identifies inhibitors of the SARS coronavirus main proteinase.
000B46 (2004) Richard Y. Kao [République populaire de Chine] ; Amanda P C. To ; Louisa W Y. Ng ; Wayne H W. Tsui ; Terri S W. Lee ; Hoi-Wah Tsoi ; Kwok-Yung YuenCharacterization of SARS-CoV main protease and identification of biologically active small molecule inhibitors using a continuous fluorescence-based assay.
000B64 (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.
000B65 (2004) Kanchan Bhardwaj [États-Unis] ; Linda Guarino [États-Unis] ; C. Cheng Kao [États-Unis]The Severe Acute Respiratory Syndrome Coronavirus Nsp15 Protein Is an Endoribonuclease That Prefers Manganese as a Cofactor
000C21 (2004) Chi-Yuan Chou [Taïwan] ; Hui-Chuan Chang ; Wen-Chi Hsu ; Tien-Zheng Lin ; Chao-Hsiung Lin ; Gu-Gang ChangQuaternary structure of the severe acute respiratory syndrome (SARS) coronavirus main protease.
000C30 (2004) Brian H. Harcourt [États-Unis] ; Dalia Jukneliene ; Amornrat Kanjanahaluethai ; John Bechill ; Kari M. Severson ; Catherine M. Smith ; Paul A. Rota ; Susan C. BakerIdentification of severe acute respiratory syndrome coronavirus replicase products and characterization of papain-like protease activity.
000C33 (2004) Mariona Parera [Espagne] ; Bonaventura Clotet ; Miguel Angel MartinezGenetic screen for monitoring severe acute respiratory syndrome coronavirus 3C-like protease.
000C55 (2005) Eric Bergeron [Canada] ; Martin J. Vincent ; Louise Wickham ; Josée Hamelin ; Ajoy Basak ; Stuart T. Nichol ; Michel Chrétien ; Nabil G. SeidahImplication of proprotein convertases in the processing and spread of severe acute respiratory syndrome coronavirus.
000D14 (2005) Xue Wu Zhang [Hong Kong] ; Yee Leng Yap ; Ralf M. AltmeyerGeneration of predictive pharmacophore model for SARS-coronavirus main proteinase.
000D38 (2005) Shuai Chen [République populaire de Chine] ; Li-Li Chen ; Hai-Bin Luo ; Tao Sun ; Jing Chen ; Fei Ye ; Jian-Hua Cai ; Jing-Kang Shen ; Xu Shen ; Hua-Liang JiangEnzymatic activity characterization of SARS coronavirus 3C-like protease by fluorescence resonance energy transfer technique.
000D62 (2004) Yuan-Ping Pang [États-Unis]Three-dimensional model of a substrate-bound SARS chymotrypsin-like cysteine proteinase predicted by multiple molecular dynamics simulations: catalytic efficiency regulated by substrate binding.
000D63 (2005) Qishi Du [République populaire de Chine] ; Shuqing Wang ; Dongqing Wei ; Suzanne Sirois ; Kuo-Chen ChouMolecular modeling and chemical modification for finding peptide inhibitor against severe acute respiratory syndrome coronavirus main proteinase.
000D65 (2005) Bing Liu [République populaire de Chine] ; Jiaju ZhouSARS-CoV protease inhibitors design using virtual screening method from natural products libraries.
000E38 (2005) Traian Sulea ; Holger A. Lindner ; Enrico O. Purisima ; Robert MénardDeubiquitination, a new function of the severe acute respiratory syndrome coronavirus papain-like protease?
000E60 (2005) Min-Feng Hsu ; Chih-Jung Kuo ; Kai-Ti Chang ; Hui-Chuan Chang ; Chia-Cheng Chou ; Tzu-Ping Ko ; Hui-Lin Shr ; Gu-Gang Chang ; Andrew H-J Wang ; Po-Huang LiangMechanism of the maturation process of SARS-CoV 3CL protease.
000E66 (2005) Julian A. Tanner [République populaire de Chine] ; Bo-Jian Zheng ; Jie Zhou ; Rory M. Watt ; Jie-Qing Jiang ; Kin-Ling Wong ; Yong-Ping Lin ; Lin-Yu Lu ; Ming-Liang He ; Hsiang-Fu Kung ; Andreas J. Kesel ; Jian-Dong HuangThe adamantane-derived bananins are potent inhibitors of the helicase activities and replication of SARS coronavirus.
000E94 (2005) Wen-Chi Hsu [Taïwan] ; Hui-Chuan Chang ; Chi-Yuan Chou ; Pui-Jen Tsai ; Pei-In Lin ; Gu-Gang ChangCritical assessment of important regions in the subunit association and catalytic action of the severe acute respiratory syndrome coronavirus main protease.

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