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甲型流感病毒M2蛋白的磷酸化对于病毒的生存能力并非必不可少。

Phosphorylation of the M2 protein of influenza A virus is not essential for virus viability.

作者信息

Thomas J M, Stevens M P, Percy N, Barclay W S

机构信息

School of Animal and Microbial Sciences, University of Reading, Whiteknights, UK.

出版信息

Virology. 1998 Dec 5;252(1):54-64. doi: 10.1006/viro.1998.9384.

Abstract

M2 is a minor component of the influenza A virus envelope. The cytoplasmic tail of the M2 protein is posttranslationally modified in the infected cell by palmitylation and phosphorylation. The primary site for phosphorylation of the M2 cytoplasmic tail is serine 64, which is highly conserved yet not required for the activity of the M2 ion channel. Using an exogenous incorporation assay, we have shown that incorporation of M2 into virus particles is type-specific and does not require phosphorylation of the cytoplasmic tail. In addition, phosphorylation of the cytoplasmic tail is not required for the directional transport of M2 in polarized MDCK cells. Using a reverse genetics and reassortment procedure, we generated a virus (Ra) specifically mutated in segment 7 such that the M2 cytoplasmic tail could no longer be phosphorylated. The virus was found to grow as well as wild-type virus in tissue culture and in eggs, was stable on passage in these systems, and possessed no second-site mutations in the engineered RNA segment. In vivo Ra replicated in Balb/c mice at least as well as the parent strain A/WSN/33. These studies indicate that phosphorylation of the M2 cytoplasmic tail is not required for in vitro or in vivo replication of influenza A virus.

摘要

M2是甲型流感病毒包膜的一个次要成分。M2蛋白的胞质尾在受感染细胞中通过棕榈酰化和磷酸化进行翻译后修饰。M2胞质尾的主要磷酸化位点是丝氨酸64,该位点高度保守,但对于M2离子通道的活性并非必需。通过外源掺入试验,我们已经表明M2掺入病毒颗粒具有型特异性,并且不需要胞质尾的磷酸化。此外,在极化的MDCK细胞中,M2的定向运输不需要胞质尾的磷酸化。利用反向遗传学和重配程序,我们产生了一种在第7节段特异性突变的病毒(Ra),使得M2胞质尾不再能够被磷酸化。发现该病毒在组织培养和鸡胚中生长情况与野生型病毒相同,在这些系统中传代时稳定,并且在工程化的RNA节段中没有第二位点突变。在体内,Ra在Balb/c小鼠中的复制至少与亲本毒株A/WSN/33一样好。这些研究表明,甲型流感病毒在体外或体内复制不需要M2胞质尾的磷酸化。

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