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人鼻病毒3C蛋白酶体外切割肽段的底物需求

Substrate requirements of human rhinovirus 3C protease for peptide cleavage in vitro.

作者信息

Cordingley M G, Callahan P L, Sardana V V, Garsky V M, Colonno R J

机构信息

Department of Virus and Cell Biology, Merck Sharp and Dohme Research Laboratories, West Point, Pennsylvania 19486.

出版信息

J Biol Chem. 1990 Jun 5;265(16):9062-5.

PMID:2160953
Abstract

A series of synthetic peptides representing authentic proteolytic cleavage sites of human rhinovirus type 14 were assayed as substrates for purified 3C protease. Competition cleavage assays were employed to determine the relative specificity constants (Kcat/Km) for substrates with sequences related to the viral 2C-3A cleavage site. Variable length peptides representing the 2C-3A cleavage site were cleaved with comparable efficiency. These studies defined a minimum substrate of 6 amino acids (TLFQ/GP), although retention of the residue at position P5 (ETLFQ/GP) resulted in a better substrate by an order of magnitude. Amino acid substitutions at position P5, P4, P1', or P2' indicated that the identity of the residue at position P5 was not critical, whereas substitutions at position P4, P1' or P2' resulted in substrates with Kcat/Km values varying over 2 orders of magnitude. In contrast to the 2C-3A cleavage site, small peptide derivatives representative of the 3A-3B cleavage site were relatively poor substrates, which suggested that residues flanking the minimum core sequence may influence susceptibility to cleavage. The 3C protease of rhinovirus type 14 was also capable of cleaving peptides representing comparable cleavage sites predicted for coxsackie B virus and poliovirus.

摘要

一系列代表14型人鼻病毒真实蛋白水解切割位点的合成肽被用作纯化的3C蛋白酶的底物。采用竞争切割试验来确定与病毒2C - 3A切割位点相关序列的底物的相对特异性常数(Kcat/Km)。代表2C - 3A切割位点的不同长度肽段以相当的效率被切割。这些研究确定了一个6个氨基酸的最小底物(TLFQ/GP),尽管保留P5位的残基(ETLFQ/GP)会使底物的效果提高一个数量级。P5、P4、P1'或P2'位的氨基酸替换表明,P5位残基的同一性并不关键,而P4、P1'或P2'位的替换会导致Kcat/Km值在2个数量级以上变化的底物。与2C - 3A切割位点相反,代表3A - 3B切割位点的小肽衍生物是相对较差的底物,这表明最小核心序列两侧的残基可能会影响切割敏感性。14型鼻病毒的3C蛋白酶也能够切割代表柯萨奇B病毒和脊髓灰质炎病毒预测的类似切割位点的肽段。

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