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流感病毒阿比朵尔抗性突变体的特征:对阿比朵尔抗流感作用机制的启示

Characteristics of arbidol-resistant mutants of influenza virus: implications for the mechanism of anti-influenza action of arbidol.

作者信息

Leneva Irina A, Russell Rupert J, Boriskin Yury S, Hay Alan J

机构信息

National Institute for Medical Research, Mill Hill, London NW7 1AA, UK.

出版信息

Antiviral Res. 2009 Feb;81(2):132-40. doi: 10.1016/j.antiviral.2008.10.009. Epub 2008 Nov 24.

DOI:10.1016/j.antiviral.2008.10.009
PMID:19028526
Abstract

The antiviral drug arbidol (ARB), which is licensed in Russia for use against influenza, is known to inhibit early membrane fusion events in influenza A and B virus replication. To investigate in more detail the target and mechanism of ARB action we generated and studied the characteristics of ARB-resistant influenza virus mutants. Observations of the ARB susceptibility of reassortants between A/Singapore/1/57(H2N2) and A/chicken/Germany/27(H7N7, "Weybridge" strain) and of mutants of the latter virus identified the virus haemagglutinin (HA) as the major determinant of ARB sensitivity. ARB-resistant mutants, selected from the most sensitive reassortant, possessed single amino acid substitutions in the HA2 subunit which caused an increase in the pH of fusion and the associated conformational change in HA. ARB was shown to stabilize the HA by causing a 0.2 pH unit reduction in the pH of the transition to the low pH form, which was specifically abrogated by the resistance mutations. Some of the resistance mutations, which reduce acid stability and would disrupt ARB-HA interactions, are located in the vicinity of a potential ARB binding site identified using the docking programme Gold. Together, the results of these investigations indicate that ARB falls within a class of inhibitor which interacts with HA to stabilize it against the low pH transition to its fusogenic state and consequently inhibit HA-mediated membrane fusion during influenza virus infection.

摘要

抗病毒药物阿比朵尔(ARB)在俄罗斯被批准用于抗流感,已知其能抑制甲型和乙型流感病毒复制过程中的早期膜融合事件。为了更详细地研究ARB的作用靶点和机制,我们构建并研究了ARB抗性流感病毒突变体的特性。对A/新加坡/1/57(H2N2)和A/鸡/德国/27(H7N7,“韦布里奇”毒株)之间的重配体以及后一种病毒的突变体进行ARB敏感性观察,确定病毒血凝素(HA)是ARB敏感性的主要决定因素。从最敏感的重配体中筛选出的ARB抗性突变体在HA2亚基中具有单个氨基酸取代,这导致融合pH值升高以及HA相关的构象变化。研究表明,ARB通过使向低pH形式转变的pH值降低0.2个单位来稳定HA,而抗性突变可特异性消除这种作用。一些降低酸稳定性并会破坏ARB-HA相互作用的抗性突变位于使用对接程序Gold确定的潜在ARB结合位点附近。这些研究结果共同表明,ARB属于一类抑制剂,它与HA相互作用以稳定HA,防止其向低pH的融合状态转变,从而在流感病毒感染期间抑制HA介导的膜融合。

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