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首页> 外文期刊>Behavioural processes >Interaction energy analysis on specific binding of influenza virus hemagglutinin to avian and human sialosaccharide receptors: Importance of mutation-induced structural change
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Interaction energy analysis on specific binding of influenza virus hemagglutinin to avian and human sialosaccharide receptors: Importance of mutation-induced structural change

机译:流感病毒血凝素对禽类和人类辛糖受体特异性结合的相互作用能量分析:突变诱导的结构变化的重要性

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摘要

On the basis of available molecular structures registered in Protein Data Bank, we have theoretically carried out the interaction energy analysis for the complexes of influenza virus hemagglutinin (HA) proteins and sialosaccharide receptor analogs of host cells. Employing the fragment molecular orbital method for quantum-chemical calculations, the differences in magnitude and pattern of the interactions between the amino acid residues of avian-type (H7N3) or human-type (H7N9) HA and each saccharide part of avian or human receptor were studied in order to elucidate the molecular mechanism of avian-to-human infectious transmission of influenza virus. We have thus confirmed quantitatively that the mutations from the avian HA to the human HA significantly strengthened the binding affinity of human HA to human receptor, while retaining the affinity to avian receptor. In addition to direct effects regarding the changes of interactions between the altered residues and the receptors, we have also found the importance of indirect effects in which structural changes caused by the mutations play vital roles to modify the intermolecular interactions.
机译:在蛋白质数据库中登录的可用分子结构的基础上,理论上我们已经对血流感病毒血凝素(HA)蛋白和宿主细胞的唾液酸糖受体类似物的复合物进行相互作用能量分析。采用片段分子轨道方法进行量子化学计算,禽类(H7N3)或人型(H7N9)HA与每种糖类或人受体的氨基酸残基之间的相互作用的差异和模式的差异研究了为了阐明流感病毒的禽流性传染病的分子机制。因此,我们已经定量地证实,来自人HA的禽HA的突变显着地加强了人HA对人受体的结合亲和力,同时保留对禽类受体的亲和力。除了有关改变的残留物和受体之间相互作用的变化之外,我们还发现了间接影响的重要性,其中由突变引起的结构变化发挥重要作用以改变分子间相互作用。

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