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猫杯状病毒衣壳前体的切割由一种病毒编码的蛋白酶介导。

Cleavage of the feline calicivirus capsid precursor is mediated by a virus-encoded proteinase.

作者信息

Sosnovtsev S V, Sosnovtseva S A, Green K Y

机构信息

Laboratory of Infectious Diseases, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, Maryland 20892, USA.

出版信息

J Virol. 1998 Apr;72(4):3051-9. doi: 10.1128/JVI.72.4.3051-3059.1998.

Abstract

Feline calicivirus (FCV), a member of the Caliciviridae, produces its major structural protein as a precursor polyprotein from a subgenomic-sized mRNA. In this study, we show that the proteinase responsible for processing this precursor into the mature capsid protein is encoded by the viral genome at the 3'-terminal portion of open reading frame 1 (ORF1). Protein expression studies of either the entire or partial ORF1 indicate that the proteinase is active when expressed either in in vitro translation or in bacterial cells. Site-directed mutagenesis was used to characterize the proteinase Glu-Ala cleavage site in the capsid precursor, utilizing an in vitro cleavage assay in which mutant precursor proteins translated from cDNA clones were used as substrates for trans cleavage by the proteinase. In general, amino acid substitutions in the P1 position (Glu) of the cleavage site were less well tolerated by the proteinase than those in the P1' position (Ala). The precursor cleavage site mutations were introduced into an infectious cDNA clone of the FCV genome, and transfection of RNA derived from these clones into feline kidney cells showed that efficient cleavage of the capsid precursor by the virus-encoded proteinase is a critical determinant in the growth of the virus.

摘要

猫杯状病毒(FCV)是杯状病毒科的成员,它从亚基因组大小的mRNA产生其主要结构蛋白作为前体多蛋白。在本研究中,我们表明负责将该前体加工成成熟衣壳蛋白的蛋白酶由病毒基因组在开放阅读框1(ORF1)的3'末端部分编码。对整个或部分ORF1的蛋白质表达研究表明,该蛋白酶在体外翻译或细菌细胞中表达时具有活性。定点诱变用于表征衣壳前体中的蛋白酶Glu-Ala切割位点,利用体外切割试验,其中从cDNA克隆翻译的突变体前体蛋白用作蛋白酶反式切割的底物。一般来说,蛋白酶对切割位点P1位置(Glu)的氨基酸取代的耐受性低于P1'位置(Ala)的取代。将前体切割位点突变引入FCV基因组的感染性cDNA克隆中,将来自这些克隆的RNA转染到猫肾细胞中表明,病毒编码的蛋白酶对衣壳前体的有效切割是病毒生长的关键决定因素。

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