Homology modeling and examination of the effect of the D92E mutation on the H5N1 nonstructural protein NS1 effector domain

被引:0
作者
Minyong Li
Binghe Wang
机构
[1] Georgia State University,Department of Chemistry and Center for Biotechnology and Drug Design
来源
Journal of Molecular Modeling | 2007年 / 13卷
关键词
H5N1; Avian influenza; Nonstructural protein NS1; Homology modeling; Molecular mechanics; Molecular dynamics; Antiviral;
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学科分类号
摘要
Virulent H5N1 strains of influenza virus often harbor a D92E point mutation in the nonstructural protein NS1. This crucial mutation has been correlated with increased virulence and/or cytokine resistance, but the structural implications of such a change are still unclear. Furthermore, NS1 protein could also be a potential target for the development of novel antiviral agents against H5N1 strains. Therefore, a reasonable 3D model of H5N1 NS1 is important for the understanding of the molecular basis of increased virulence and the design of novel antiviral agents. Based on the crystal structure of a non-H5N1 NS1 protein, a model of H5N1 NS1 was developed by homology modeling, molecular mechanics and molecular dynamics simulations. It was found that the D92E mutation could result in weakened interactions of the carboxylate side chain with other phosphorylated residues, thereby activating phosphorylation of NS1.
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页码:1237 / 1244
页数:7
相关论文
共 207 条
[1]  
Claas EC(1998)undefined Lancet 351 472-477
[2]  
Osterhaus AD(2003)undefined Science 302 1519-1522
[3]  
van Beek R(2006)undefined JAMA 295 554-556
[4]  
De Jong JC(2005)undefined Science 309 1083-1087
[5]  
Rimmelzwaan GF(2003)undefined Virology 309 181-189
[6]  
Senne DA(1995)undefined J Gen Virol 76 1001-1007
[7]  
Krauss S(1999)undefined EMBO J 18 2273-2283
[8]  
Shortridge KF(1998)undefined Mol Cell 1 991-1000
[9]  
Webster RG(2000)undefined J Virol 74 7989-7996
[10]  
Webby RJ(2000)undefined J Virol 74 11566-11573