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Insights into structural and inhibitory mechanisms of low pH-induced conformational change of influenza HA2 protein: a computational approach

机译:洞察甲型HA2蛋白低pH诱导的构象变化的结构和抑制机制:计算方法

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Though oseltamivir and zanamivir are the active anti-influenza drugs, the emergence of different strains of influenza A virus with mutations creates drug-resistance to these drugs. Therefore, it is essential to find a suitable approach to stop the viral infection. The present study focuses on understanding the conformational changes of the HA2 protein at different pH levels (pH7, pH6, pH5) and on blocking the low pH-induced conformational changes of the HA2 protein with a suitable ligand using molecular docking and molecular dynamics (MD) simulation methods. As the pH value decreases to pH5, the protein undergoes large conformational changes with less stability in the order of pH7>pH6>pH5. The fusion peptide (residues 1-20) and the extended loop (residues 58-75) deviate more at pH5. The ligand stachyflin bound between the N- and C-terminal helix regions retains the stability of the HA2 protein at pH5 and blocks the low pH-induced conformational transition. The performance of stachyflin is increased when it directly interacts with residues at the intramonomer binding site rather than the intermonomer binding site. The susceptibility of the HA2 protein of different subtypes to stachyflin is in the order of H1>H7>H5>H2>H3. Stachflin has a higher binding affinity for H1 (at pH7, pH6, pH5) and H7 subtypes than others. Lys47, Lys58, and Glu103 are the key residues that favor the binding and highly stabilize the HA2 protein at low pH.
机译:虽然Oseltamivir和Zanamivir是活跃的抗流感药物,但突变的不同株的流感菌株的出现会对这些药物产生耐药性。因此,必须找到一种适当的方法来阻止病毒感染。本研究侧重于理解在不同pH水平(pH7,pH6,pH5)下HA2蛋白的构象变化以及使用分子对接和分子动力学(MD)用合适的配体阻断HA2蛋白的低pH诱导的构象变化(MD )仿真方法。当pH值降低至pH5时,蛋白质经历大的构象变化,稳定性较少,稳定性为pH7> pH6> pH5。融合肽(残留物1-20)和延长环(残基58-75)偏离pH5。在N-和C末端螺旋区域之间绑定的配体Stachyflin保留HA2蛋白在pH5的稳定性,并阻断低pH诱导的构象转变。当它直接与夹层结合位点的残留物直接相互作用而不是间聚器结合位点时,STOHYFLIN的性能增加。不同亚型对STOHYFLIN的HA2蛋白的敏感性为H1> H7> H5> H 2> H 3的顺序。 STACHFLIN对H1具有更高的结合亲和力(pH7,pH6,pH5)和H7亚型比其他物质。 Lys47,Lys58和Glu103是有利于结合的关键残留物,并高度稳定低pH。

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