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脊髓灰质炎病毒多肽3CD的纯化与特性分析,3CD是一种蛋白酶及RNA聚合酶的前体。

Purification and characterization of poliovirus polypeptide 3CD, a proteinase and a precursor for RNA polymerase.

作者信息

Harris K S, Reddigari S R, Nicklin M J, Hämmerle T, Wimmer E

机构信息

Department of Microbiology, State University of New York, Stony Brook 11794-8621.

出版信息

J Virol. 1992 Dec;66(12):7481-9. doi: 10.1128/JVI.66.12.7481-7489.1992.

Abstract

A cDNA clone encoding the 3CD proteinase (3CDpro) of poliovirus type 2 (Sabin), the precursor to proteinase 3Cpro and RNA polymerase 3Dpol, was expressed in bacteria by using a T7 expression system. Site-specific mutagenesis of the 3C/3D cleavage site was performed to generate active proteolytic precursors impaired in their ability to process themselves to 3Cpro and 3Dpol. Of these mutations, the exchange of the Thr residue at the P4 position of the 3C/3D cleavage site for a Lys residue (3CDpro T181K) resulted in a mutant polypeptide exhibiting the smallest amount of autoprocessing. This mutant was purified to 86% homogeneity and used for subsequent proteolytic studies. Purified 3CDproM (M designates the cleavage site mutant 3CDpro T181K) was capable of cleaving the P1 capsid precursor, a peptide representing the 2BC cleavage site, and the 2BC precursor polypeptide. Purified 3CDproM demonstrated the same detergent sensitivity in processing experiments with the capsid precursor as was observed by using P1 and crude extracts of poliovirus-infected HeLa cell lysates. Purified 3CDproM did not have any detectable RNA polymerase activity, whereas 3Dpol, separated from 3CDproM by gel filtration in the last step of purification, did. We conclude that 3CDproM can process both structural and nonstructural precursors of the poliovirus polyprotein and that it is active against a synthetic peptide substrate. Moreover, cleavage of 3CD to 3Dpol is needed to activate the 3D RNA polymerase.

摘要

编码脊髓灰质炎病毒2型(萨宾株)3CD蛋白酶(3CDpro)的cDNA克隆在细菌中通过T7表达系统进行表达,3CD蛋白酶是蛋白酶3Cpro和RNA聚合酶3Dpol的前体。对3C/3D切割位点进行位点特异性诱变,以产生在将自身加工成3Cpro和3Dpol的能力上受损的活性蛋白水解前体。在这些突变中,将3C/3D切割位点P4位置的苏氨酸残基替换为赖氨酸残基(3CDpro T181K)产生了自加工量最少的突变多肽。该突变体被纯化至86%的纯度,并用于后续的蛋白水解研究。纯化的3CDproM(M表示切割位点突变体3CDpro T181K)能够切割P1衣壳前体、代表2BC切割位点的肽以及2BC前体多肽。在衣壳前体加工实验中,纯化的3CDproM表现出与使用P1以及脊髓灰质炎病毒感染的HeLa细胞裂解物粗提物时观察到的相同的去污剂敏感性。纯化的3CDproM没有任何可检测到的RNA聚合酶活性,而在纯化的最后一步通过凝胶过滤从3CDproM中分离出的3Dpol具有该活性。我们得出结论,3CDproM可以加工脊髓灰质炎病毒多聚蛋白的结构和非结构前体,并且它对合成肽底物具有活性。此外,3CD切割成3Dpol是激活3D RNA聚合酶所必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/21bb/240456/b2790ba1e76d/jvirol00043-0660-a.jpg

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