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脊髓灰质炎病毒P3蛋白的完整蛋白质连锁图谱:聚合酶3Dpol与VPg以及3AB基因变体的相互作用

Complete protein linkage map of poliovirus P3 proteins: interaction of polymerase 3Dpol with VPg and with genetic variants of 3AB.

作者信息

Xiang W, Cuconati A, Hope D, Kirkegaard K, Wimmer E

机构信息

Department of Molecular Genetics and Microbiology, School of Medicine, State University of New York at Stony Brook, Stony Brook, New York 11794-5222, USA.

出版信息

J Virol. 1998 Aug;72(8):6732-41. doi: 10.1128/JVI.72.8.6732-6741.1998.

Abstract

Poliovirus has evolved to maximize its genomic information by producing multifunctional viral proteins. The P3 nonstructural proteins harbor various activities when paired with different binding partners. These viral polypeptides regulate host cell macromolecular synthesis and function as proteinases, as RNA binding proteins, or as RNA-dependent RNA polymerase. A cleavage product of the P3 region is the genome-linked protein VPg that is essential in the initiation of RNA synthesis. We have used an inducible yeast two-hybrid system to analyze directly protein-protein interactions among P3 proteins. Sixteen signals of homo- or heterodimer interactions have been observed and have been divided into three groups. Of interest is the newly discovered affinity of VPg to 3Dpol that suggests direct interaction between these molecules in genome replication. A battery of 3AB variants (eight clustered-charge-to-alanine changes and five single-amino-acid mutations) has been used to map the binding determinants of 3AB-3AB interaction which were found to differ from the amino acids critical for the 3AB-3Dpol interaction. The viral proteinase 3Cpro was not found to interact with other 3Cpro molecules or with any other P3 polypeptide in yeast cells, a result confirmed by glutaraldehyde cross-linking. The weak apparent interaction between 3AB and 3CDpro scored in the yeast two-hybrid system was in contrast to a strong signal by far-Western blotting. The results elucidate, in part, previous results of biochemical and genetic analyses. The role of the interactions in RNA replication is addressed.

摘要

脊髓灰质炎病毒通过产生多功能病毒蛋白,进化到能够最大化其基因组信息。P3非结构蛋白与不同的结合伙伴配对时具有多种活性。这些病毒多肽调节宿主细胞大分子合成,并作为蛋白酶、RNA结合蛋白或RNA依赖性RNA聚合酶发挥作用。P3区域的一个切割产物是基因组连接蛋白VPg,它在RNA合成起始过程中至关重要。我们使用了一种可诱导的酵母双杂交系统,直接分析P3蛋白之间的蛋白质-蛋白质相互作用。已观察到16种同二聚体或异二聚体相互作用信号,并分为三组。有趣的是,新发现的VPg与3Dpol的亲和力表明这些分子在基因组复制中直接相互作用。一系列3AB变体(8个成簇电荷到丙氨酸的变化和5个单氨基酸突变)已被用于绘制3AB-3AB相互作用的结合决定簇,发现其与3AB-3Dpol相互作用的关键氨基酸不同。在酵母细胞中未发现病毒蛋白酶3Cpro与其他3Cpro分子或任何其他P3多肽相互作用,戊二醛交联证实了这一结果。酵母双杂交系统中检测到的3AB与3CDpro之间微弱的明显相互作用,与远缘Western印迹法的强信号形成对比。这些结果部分阐明了先前生化和遗传分析的结果。文中探讨了这些相互作用在RNA复制中的作用。

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