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Prediction of a common neutralizing epitope of H5N1 avian influenza virus by in silico molecular docking

机译:通过计算机分子对接预测H5N1禽流感病毒的常见中和表位

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The H5N1 avian influenza virus (AIV) has widely spread in Asia, Europe and Africa, making a large amount of economic loss. Recently, our research group has screened a common neutralizing monoclonal antibody named 8H5, which can neutralize almost all H5 subtype AIV ever isolated so far. Obviously, this monoclonal antibody would benefit for research and development of the universal AIV vaccine and design of the drug against H5N1 AIV in high mutation rate. In this study, the homology modeling was applied to generate the 3D structure of 8H5 Fab fragment, and "canonical structure" method was used to define the specified loop conformation of CDR regions. The model was subjected to energy minimization in cvff force field with Discovery module in Insight II program. The resulting model has correct stereochemistry as gauged from the Ramachandran plot calculation and good 3D-structure compatibility as assessed by interaction energy analysis, solvent accessible surface (SAS) analysis, and Profiles-3D approach. Furthermore, the 8H5 Fab model was subjected to docking with three H5 subtype hemagglutinin (HA) structures deposited in PDB (ID No: 1jsm, 2ibx and 2fk0) respectively. The result indicates that the three docked complexes share a common binding interface, but differ in binding angle related with HA structure similarity between viral subtypes. In the light of the three HA interfaces with structural homology analysis, the common neutralizing epitope on HA recognized by 8H5 consists of 9 incontinuous amino acid residues: Asp(68), Asn(72), Glu(112), Lys(113), Ile(114), Pro(118), Ser(120), Tyr(137), Tyr(252) (numbered as for 1jsm sequence). The primary purpose of the present work is to provide some insight into structure and binding details of a common neutralizing epitope of H5N1 AIV, thereby aiding in the structure-based design of universal AIV vaccines and anti-virus therapeutic drugs.
机译:H5N1禽流感病毒(AIV)已在亚洲,欧洲和非洲广泛传播,造成了巨大的经济损失。最近,我们的研究小组筛选了一种常见的中和单克隆抗体,称为8H5,该抗体可以中和迄今为止分离出的几乎所有H5亚型AIV。显然,这种单克隆抗体将有利于通用AIV疫苗的研究和开发以及高突变率抗H5N1 AIV药物的设计。在这项研究中,应用同源性建模生成8H5 Fab片段的3D结构,并使用“规范结构”方法定义CDR区的特定环构象。使用Insight II程序中的Discovery模块在cvff力场中对模型进行了能量最小化。根据Ramachandran图计算得出的结果模型具有正确的立体化学,并通过相互作用能分析,溶剂可及表面(SAS)分析和Profiles-3D方法评估了良好的3D结构相容性。此外,将8H5 Fab模型与分别沉积在PDB(ID号:1jsm,2ibx和2fk0)中的三个H5亚型血凝素(HA)结构对接。结果表明,三个对接的复合物具有相同的结合界面,但是结合角度不同,与病毒亚型之间的HA结构相似性有关。根据结构同源性分析的三个HA界面,由8H5识别的HA上常见的中和表位由9个连续氨基酸残基组成:Asp(68),Asn(72),Glu(112),Lys(113), Ile(114),Pro(118),Ser(120),Tyr(137),Tyr(252)(编号为1jsm序列)。本工作的主要目的是为H5N1 AIV的常见中和表位的结构和结合细节提供一些见识,从而有助于通用AIV疫苗和抗病毒治疗药物的基于结构的设计。

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