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首页> 外文期刊>Virology >Prediction of three-dimensional structure and mapping of conformational epitopes of envelope glycoprotein of Japanese encephalitis virus.
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Prediction of three-dimensional structure and mapping of conformational epitopes of envelope glycoprotein of Japanese encephalitis virus.

机译:日本脑炎病毒包膜糖蛋白的三维结构预测和构象表位的作图。

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Japanese encephalitis virus (JEV), a mosquito-borne flavivirus, is an important human pathogen. The envelope glycoprotein (Egp), a major structural antigen, is responsible for viral haemagglutination and eliciting neutralising antibodies. The three-dimensional structure of the Egp of JEV was predicted using the knowledge-based homology modeling approach and X-ray structure data of the Egp of tick-borne encephalitis virus as a template (Rey et al., 1995). In the initial stages of optimisation, a distance-dependent dielectric constant of 4r(ij) was used to simulate the solvent effect. The predicted structure was refined by solvating the protein in a 10-A layer of water by explicitly considering 4867 water molecules. Four independent structure evaluation methods report this structure to be acceptable stereochemically and geometrically. The Egp of JEV has an extended structure with seven beta-sheets, two alpha-helices, and three domains. The water-solvated structure was used to delineate conformational and sequential epitopes. These results document the importance of tertiary structure in understanding the antigenic properties of flaviviruses in general and JEV in particular. The conformational epitope prediction method could be used to identify conformational epitopes on any protein antigen with known three-dimensional structure. This is one of the largest proteins whose three-dimensional structure has been predicted using an homology modeling approach and water as a solvent. Copyright 1999 Academic Press.
机译:蚊媒黄病毒日本脑炎病毒(JEV)是重要的人类病原体。包膜糖蛋白(Egp)是一种主要的结构抗原,负责病毒的血细胞凝集作用并引发中和抗体。使用基于知识的同源性建模方法和tick传脑炎病毒Egp的X射线结构数据作为模板,可以预测JEV Egp的三维结构(Rey等,1995)。在优化的初始阶段,使用距离相关的介电常数4r(ij)来模拟溶剂效应。通过明确考虑4867个水分子将蛋白质溶解在10-A的水层中来完善预测的结构。四种独立的结构评估方法报告该结构在立体化学和几何结构上均可接受。 JEV的Egp具有扩展的结构,具有七个beta-sheet,两个alpha-螺旋和三个域。使用水溶结构来描绘构象和顺序表位。这些结果证明了三级结构对于理解一般黄病毒尤其是JEV的抗原特性的重要性。构象表位预测方法可用于鉴定具有已知三维结构的任何蛋白质抗原上的构象表位。这是最大的蛋白质之一,已使用同源建模方法并以水为溶剂预测了三维结构。版权所有1999,学术出版社。

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