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针对流感血凝素的新型抑制剂的计算机辅助设计。

In Silico Design of New Inhibitors Against Hemagglutinin of Influenza.

机构信息

Chimie ParisTech, PSL Research University, CNRS, Institut de Recherche de Chimie Paris (IRCP) , F-75005 Paris , France.

Université Paris Diderot, Sorbonne Paris Cité , 5 rue Thomas Mann , F-75205 Paris Cedex 13 , France.

出版信息

J Phys Chem B. 2019 Jan 24;123(3):582-592. doi: 10.1021/acs.jpcb.8b10767. Epub 2019 Jan 14.

Abstract

The RNA virus influenza A is a serious public health problem, with epidemics resulting in more than 250 000 deaths every year. A protein cavity was identified on the HA2 subunit of the hemagglutinin responsible for the entry of the virus into the host cell by endocytosis. The binding of a ligand in this zone rich in invariant residues and synthetic lethal couples could prevent therapeutic escape and inhibit the conformational change at pH = 5 which is necessary to initiate the membrane fusion in the endosome. Two pentapeptides, a linear peptide (EQRRS) and a cyclic peptide (DQRRD), have been proposed as potential ligands. Complex stability and the interactions between the ligand and the protein have been studied with the help of molecular dynamics and quantum chemistry methods. A high stability of the interactions has been obtained for these two ligands at both pH = 7 and pH = 5. Indeed, these two peptides present two cooperative modes of action that should prevent the conformational change at the origin of the spring-loaded mechanism at pH = 5, (1) mechanical because they are docked on HA2 and (2) electronic because they modify the protonation states of key residues in the loop. This study thus paves the way toward the development of peptide ligands that can inhibit the membrane fusion process.

摘要

RNA 病毒流感 A 是一个严重的公共卫生问题,每年的流感疫情都会导致超过 25 万人死亡。在血凝素的 HA2 亚基上发现了一个蛋白质腔,负责病毒通过内吞作用进入宿主细胞。在这个富含不变残基的区域结合配体和合成致死伴侣可以防止治疗逃逸,并抑制在 pH = 5 时发生的构象变化,这是在内体中启动膜融合所必需的。已经提出了两个五肽,一个线性肽(EQRRS)和一个环状肽(DQRRD),作为潜在的配体。借助分子动力学和量子化学方法研究了复合物的稳定性和配体与蛋白质之间的相互作用。在 pH = 7 和 pH = 5 时,这两种配体都获得了很高的相互作用稳定性。事实上,这两种肽具有两种协同作用模式,应该可以防止在 pH = 5 时引发弹弓机制的构象变化,(1)机械的,因为它们与 HA2 对接,(2)电子的,因为它们改变了环中的关键残基的质子化状态。因此,这项研究为开发可以抑制膜融合过程的肽配体铺平了道路。

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