Theoretical insights into the molecular mechanism of I117V mutation in neuraminidase mediated reduction of oseltamivir drug susceptibility in A/H5N1 influenza virus

Mohini Yadav, Manabu Igarashi, Norifumi Yamamoto
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引用次数: 1

Abstract

The substitution of Ile to Val at residue 117 (I117V) of neuraminidase (NA) reduces the susceptibility of the A/H5N1 influenza virus to oseltamivir (OTV). However, the molecular mechanism by which the I117V mutation affects the intermolecular interactions between NA and OTV has not been fully elucidated. In this study, we performed molecular dynamics (MD) simulations to analyze the characteristic conformational changes that contribute to the reduced binding affinity of NA to OTV after the I117V mutation. The results of MD simulations revealed that after the I117V mutation in NA, the changes in the secondary structure around the mutation site had a noticeable effect on the residue interactions in the OTV-binding site. In the case of the WT NA-OTV complex, the positively charged side chain of R118, located in the β-sheet region, frequently interacted with the negatively charged side chain of E119, which is an amino acid residue in the OTV-binding site. This can reduce the electrostatic repulsion of E119 toward D151, which is also a negatively charged residue in the OTV-binding site, so that both E119 and D151 simultaneously form hydrogen bonds with OTV more frequently, which greatly contributes to the binding affinity of NA to OTV. After the I117V mutation in NA, the side chain of R118 interacted with the side chain of E119 less frequently, likely because of the decreased tendency of R118 to form a β-sheet structure. As a result, the electrostatic repulsion of E119 toward D151 is greater than that of the WT case, making it difficult for both E119 and D151 to simultaneously form hydrogen bonds with OTV, which in turn reduces the binding affinity of NA to OTV. Hence, after the I117V mutation in NA, influenza viruses are less susceptible to OTV because of conformational changes in residues of R118, E119, and D151 around the mutation site and in the binding site.
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A/H5N1流感病毒神经氨酸酶I117V突变介导奥司他韦药物敏感性降低的分子机制的理论见解
神经氨酸酶(NA)残基117 (I117V)上Ile被Val取代,降低了A/H5N1流感病毒对奥司他韦(OTV)的易感性。然而,I117V突变影响NA和OTV分子间相互作用的分子机制尚未完全阐明。在这项研究中,我们进行了分子动力学(MD)模拟来分析I117V突变后NA与OTV结合亲和力降低的特征构象变化。MD模拟结果显示,NA中I117V突变后,突变位点周围二级结构的变化对otv结合位点的残基相互作用有明显影响。在WT NA-OTV复合物中,R118带正电的侧链位于β-sheet区域,经常与E119带负电的侧链相互作用,E119是otv结合位点的氨基酸残基。这可以减少E119对D151的静电斥力,D151也是OTV结合位点上带负电的残基,从而使E119和D151更频繁地同时与OTV形成氢键,这极大地促进了NA对OTV的结合亲和力。NA中I117V突变后,R118侧链与E119侧链的相互作用频率降低,可能是由于R118形成β-sheet结构的倾向降低。因此,E119对D151的静电斥力大于WT情况下的斥力,使得E119和D151难以同时与OTV形成氢键,从而降低了NA对OTV的结合亲和力。因此,NA发生I117V突变后,流感病毒对OTV的易感性降低,这是因为突变位点周围和结合位点的R118、E119和D151残基的构象发生了变化。
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