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仙台病毒P蛋白在丝氨酸249处持续磷酸化:P蛋白的高磷酸化潜能。

Sendai virus P protein is constitutively phosphorylated at serine249: high phosphorylation potential of the P protein.

作者信息

Byrappa S, Pan Y B, Gupta K C

机构信息

Department of Immunology/Microbiology, Rush Presbyterian St. Luke's Medical Center, Chicago, Illinois 60612, USA.

出版信息

Virology. 1996 Feb 1;216(1):228-34. doi: 10.1006/viro.1996.0052.

Abstract

Previously we showed that the Sendai virus P protein (568 aa) in virus-infected cells and in virions was primarily and constitutively phosphorylated on serine(s) in a single tryptic phosphopeptide TP1. By two-dimensional thin-layer electrophoresis and chromatography analysis of tryptic phosphopeptides of several deletion and point mutants of the P protein, we now show that the sole phosphorylation site in TP1 is serine249. Interestingly, when serine249 was deleted or mutagenized alternate potential serine sites were more heavily phosphorylated. A similar effect was observed when the deletion was very close to serine249 (delta 208-236). Mutagenesis of proline250 to alanine abrogated phosphorylation at serine249 suggesting that proline250 is essential for the primary phosphorylation of the P protein. Conceivably, serine249 phosphorylation is mediated by a proline-directed protein kinase. This finding is unusual because a majority of the P proteins from other negative-strand RNA viruses have been shown to be phosphorylated primarily by casein kinase II. Our results demonstrate that the P protein has a strong potency to remain phosphorylated. Based on our previous and present results, we suggest that the phosphorylation sites on P are dependent on the accessibility of phosphatases rather than kinases as all potential sites are about equally competent for phosphorylation. We propose that phosphorylation is important for maintaining the structural integrity of the Sendai virus P protein.

摘要

先前我们发现,在病毒感染的细胞和病毒粒子中,仙台病毒P蛋白(568个氨基酸)主要在单一胰蛋白酶磷酸肽TP1中的丝氨酸上持续磷酸化。通过对P蛋白的几个缺失和点突变体的胰蛋白酶磷酸肽进行二维薄层电泳和色谱分析,我们现在表明TP1中的唯一磷酸化位点是丝氨酸249。有趣的是,当丝氨酸249缺失或诱变时,其他潜在的丝氨酸位点磷酸化程度更高。当缺失非常靠近丝氨酸249(δ208 - 236)时也观察到类似的效果。将脯氨酸250突变为丙氨酸消除了丝氨酸249处的磷酸化,这表明脯氨酸250对于P蛋白的初级磷酸化至关重要。可以想象,丝氨酸249的磷酸化是由脯氨酸定向蛋白激酶介导的。这一发现不同寻常,因为已表明来自其他负链RNA病毒的大多数P蛋白主要由酪蛋白激酶II磷酸化。我们的结果表明,P蛋白具有很强的持续磷酸化能力。基于我们之前和现在的结果,我们认为P蛋白上的磷酸化位点取决于磷酸酶的可及性而非激酶,因为所有潜在位点磷酸化能力大致相同。我们提出磷酸化对于维持仙台病毒P蛋白的结构完整性很重要。

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