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甲型肝炎病毒(HAV)的蛋白酶3C在包括VP1/2A和2A/2B在内的所有位点切割HAV多聚蛋白P2 - P3。

Proteinase 3C of hepatitis A virus (HAV) cleaves the HAV polyprotein P2-P3 at all sites including VP1/2A and 2A/2B.

作者信息

Schultheiss T, Kusov Y Y, Gauss-Müller V

机构信息

Institute of Medical Microbiology, Medical University of Lübeck, Germany.

出版信息

Virology. 1994 Jan;198(1):275-81. doi: 10.1006/viro.1994.1030.

Abstract

Thus far, the only virus-encoded proteinase of hepatitis A virus (HAV) detected is 3C, which was shown to catalyze proteolysis of most of the suggested cleavage sites within the HAV precursor polyprotein. To elucidate whether or not HAV proteinase 3C and its precursors are involved in processing of the yet unidentified sites in the polyprotein P2-P3, the genomic region of 3C including flanking sequences were expressed in a bacterial system and by cell-free translation. In both systems 2A-reactive proteins of 10 (2A) and 16 kDa (delta VP1-2A) were processing products of a polyprotein representing delta VP1-P2-P3* (delta and * denote N- or C-terminally truncated proteins, respectively), thus providing evidence for cleavage at sites VP1/2A and 2A/2B by proteinase 3C. In the cell-free expression system, processing at the P2/P3 junction was rapid and complete, whereas sites 3A/3B, 3B/3C, and 3C/3D were inefficiently cleaved, as evidenced by the accumulation of the stable precursor polypeptides P3* and 3ABC. In contrast to the eukaryotic system, mature 3C was produced in Escherichia coli. Intermolecular cleavage by recombinant 3C occurred at all putative sites within the proteolytically inactive polyprotein P2-P3* mu. The results of this study indicate that proteinase 3C mediates the primary as well as the secondary cleavages of the HAV polyprotein and thus shows an activity profile broader than that of 3C proteinases of other picornaviruses.

摘要

迄今为止,检测到的甲型肝炎病毒(HAV)唯一的病毒编码蛋白酶是3C,它被证明能催化HAV前体多聚蛋白内大多数假定切割位点的蛋白水解。为了阐明HAV蛋白酶3C及其前体是否参与多聚蛋白P2 - P3中尚未确定的位点的加工,包含侧翼序列的3C基因组区域在细菌系统中以及通过无细胞翻译进行表达。在这两种系统中,10 kDa(2A)和16 kDa(δVP1 - 2A)的2A反应性蛋白是代表δVP1 - P2 - P3的多聚蛋白的加工产物(δ和分别表示N端或C端截短的蛋白),从而为蛋白酶3C在VP1/2A和2A/2B位点的切割提供了证据。在无细胞表达系统中,P2/P3连接处的加工迅速且完全,而3A/3B、3B/3C和3C/3D位点的切割效率低下,稳定的前体多肽P3和3ABC的积累证明了这一点。与真核系统不同,成熟的3C在大肠杆菌中产生。重组3C在蛋白水解无活性的多聚蛋白P2 - P3μ内的所有假定位点发生分子间切割。这项研究的结果表明,蛋白酶3C介导了HAV多聚蛋白的一级和二级切割,因此显示出比其他小RNA病毒的3C蛋白酶更广泛的活性谱。

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