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单纯疱疹病毒1型ICP4磷酸化位点分析

Analysis of phosphorylation sites of herpes simplex virus type 1 ICP4.

作者信息

Xia K, DeLuca N A, Knipe D M

机构信息

Department of Microbiology and Molecular Genetics, Harvard Medical School, Boston, Massachusetts 02115, USA.

出版信息

J Virol. 1996 Feb;70(2):1061-71. doi: 10.1128/JVI.70.2.1061-1071.1996.

Abstract

The herpes simplex virus ICP4 protein is required for induction of early and late viral gene transcription as well as for repression of expression of its own gene and several other viral genes. Several electrophoretic forms of ICP4 have been observed, and phosphorylation is thought to contribute to this heterogeneity and possibly to the multiple functions of ICP4. To define the complexity of the site(s) of phosphorylation of ICP4 and to initiate mapping of this site(s), we have performed two-dimensional phosphopeptide mapping of wild-type and mutant forms of ICP4 labeled in infected cells or in vitro. Wild-type ICP4 labeled in infected cells shows a complex pattern of phosphopeptides, and smaller mutant forms of ICP4 show progressively fewer phosphopeptides, arguing that multiple sites on ICP4 are phosphorylated. The serine-rich region of ICP4, residues 175 to 198, was shown to be a site for phosphorylation. Furthermore, the serine-rich region itself or the phosphorylation of this region increases phosphorylation of all phosphopeptides. A mutant ICP4 molecule lacking the serine-rich region showed low levels of phosphorylation by protein kinase A or protein kinase C in vitro. These results suggest that there may be a sequential phosphorylation of ICP4, with phosphorylation of the serine-rich region stimulating phosphorylation of the rest of the molecule. In addition, purified ICP4 showed an associated kinase activity or an autophosphorylation activity with properties different from those of protein kinase A or protein kinase C.

摘要

单纯疱疹病毒ICP4蛋白是诱导病毒早期和晚期基因转录以及抑制其自身基因和其他几种病毒基因表达所必需的。已观察到ICP4有几种电泳形式,磷酸化被认为导致了这种异质性,并可能与ICP4的多种功能有关。为了确定ICP4磷酸化位点的复杂性并开始对该位点进行定位,我们对在感染细胞或体外标记的野生型和突变型ICP4进行了二维磷酸肽图谱分析。在感染细胞中标记的野生型ICP4显示出复杂的磷酸肽图谱,而较小的突变型ICP4显示出的磷酸肽逐渐减少,这表明ICP4上有多个位点被磷酸化。ICP4富含丝氨酸的区域,即第175至198位氨基酸残基,被证明是一个磷酸化位点。此外,富含丝氨酸的区域本身或该区域的磷酸化会增加所有磷酸肽的磷酸化。一个缺少富含丝氨酸区域的突变型ICP4分子在体外被蛋白激酶A或蛋白激酶C磷酸化的水平较低。这些结果表明,ICP4可能存在顺序磷酸化,富含丝氨酸区域的磷酸化会刺激分子其余部分的磷酸化。此外,纯化的ICP4显示出一种相关的激酶活性或自身磷酸化活性,其性质不同于蛋白激酶A或蛋白激酶C。

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