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单纯疱疹病毒1型γ(1)34.5蛋白效应结构域中的氨基酸取代对病毒对α干扰素的反应有不同影响。

Amino acid substitutions in the effector domain of the gamma(1)34.5 protein of herpes simplex virus 1 have differential effects on viral response to interferon-alpha.

作者信息

Cerveny Melissa, Hessefort Suzanne, Yang Kui, Cheng Guofeng, Gross Martin, He Bin

机构信息

Department of Microbiology and Immunology, College of Medicine, The University of Illinois at Chicago, 60612, USA.

出版信息

Virology. 2003 Mar 15;307(2):290-300. doi: 10.1016/s0042-6822(02)00075-2.

Abstract

The gamma(1)34.5 protein of herpes simplex virus 1 (HSV-1) is a virus-encoded protein phosphatase 1 (PP1) regulatory protein that contributes to viral resistance to interferon. It functions to block the shutoff of protein synthesis mediated by the double-stranded RNA-dependent protein kinase. This requires the carboxyl terminus of the gamma(1)34.5 protein to recruit PP1, forming a high-molecular-weight complex that dephosphorylates the alpha subunit of translation initiation factor eIF-2 (eIF-2alpha). In the present study, we introduced a series of point mutations into a region in the effector domain of the gamma(1)34.5 protein, which is adjacent to the PP1-binding domain. Analysis of these mutants in virus-infected cells shows that Ser209Ala, Ser209Asp, Ser218Ala, or Trp219Tyr substitution does not affect viral response to interferon-alpha. In contrast, Arg215Leu or Ser218Asp substitution rendered the virus hypersensitive to interferon-alpha, which correlates with the inability of these gamma(1)34.5 mutants to mediate dephosphorylation of eIF-2alpha. However, Arg215Leu or Ser218Asp substitution does not disrupt the formation of a high-molecular-weight complex required for eIF-2alpha dephosphorylation or binding of the gamma(1)34.5 protein to PP1. These results suggest that concerted action of the PP1-binding domain and the effector domain of the gamma(1)34.5 protein is required to confer HSV-1 interferon resistance.

摘要

单纯疱疹病毒1型(HSV-1)的γ(1)34.5蛋白是一种病毒编码的蛋白磷酸酶1(PP1)调节蛋白,它有助于病毒抵抗干扰素。其功能是阻断由双链RNA依赖性蛋白激酶介导的蛋白质合成的关闭。这需要γ(1)34.5蛋白的羧基末端募集PP1,形成一种高分子量复合物,使翻译起始因子eIF-2(eIF-2α)的α亚基去磷酸化。在本研究中,我们在γ(1)34.5蛋白效应结构域中与PP1结合结构域相邻的区域引入了一系列点突变。对病毒感染细胞中的这些突变体进行分析表明,Ser209Ala、Ser209Asp、Ser218Ala或Trp219Tyr替代不影响病毒对干扰素-α的反应。相反,Arg215Leu或Ser218Asp替代使病毒对干扰素-α高度敏感,这与这些γ(1)34.5突变体无法介导eIF-2α的去磷酸化相关。然而,Arg215Leu或Ser218Asp替代并不破坏eIF-2α去磷酸化所需的高分子量复合物的形成,也不破坏γ(1)34.5蛋白与PP1的结合。这些结果表明,γ(1)34.5蛋白的PP1结合结构域和效应结构域协同作用对于赋予HSV-1干扰素抗性是必需的。

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