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对包含病毒蛋白酶的墨累谷脑炎病毒非结构多蛋白片段进行蛋白水解加工:一种NS3-4A前体的积累,其有效加工需要成熟的NS3。

Proteolytic processing of a Murray Valley encephalitis virus non-structural polyprotein segment containing the viral proteinase: accumulation of a NS3-4A precursor which requires mature NS3 for efficient processing.

作者信息

Lobigs M

机构信息

Division of Cell Biology, John Curtin School of Medical Research, Australian National University, Canberra.

出版信息

J Gen Virol. 1992 Sep;73 ( Pt 9):2305-12. doi: 10.1099/0022-1317-73-9-2305.

Abstract

The proteolytic processing of a non-structural polyprotein segment from the cytoplasmic domain of NS2A to the C terminus of NS5 of Murray Valley encephalitis (MVE) virus was examined, when expressed from cDNA via a vaccinia virus recombinant, in transiently transfected COS cells, or synthesized by cell-free translation. Cleavages mediated by the virus-encoded proteinase domain in NS3 at the junctions of NS2A-2B, NS2B-3 and NS4B-5 were catalysed efficiently. However, the cleavage at the NS3-4A junction, also mediated by the NS3 proteinase, was greatly delayed. Little or no NS3 was found, but an 85K precursor molecule accumulated; this was identified as NS3-4A. Termination codons were introduced by site-directed mutagenesis at the junctions of the NS3-4A, NS4A-4B and NS4B-5 genes to generate C-terminal truncations of the MVE virus polyprotein segment. In expression studies of these constructs the predicted NS3-mediated proteolytic cleavages were catalysed, except for that at the NS3-4A junction. In co-infections and co-transfections with constructs encoding the MVE virus nonstructural polyprotein region truncated at the C termini of NS3 or NS4A, efficient processing at the NS3-4A site was induced. Thus it appears that the MVE virus polyprotein is cleaved inefficiently in cis at the NS3-4A junction, whereas the site is processed efficiently in trans by mature NS3. The NS3-4A precursor is also seen in flavivirus-infected cells. Its function remains to be determined, but it could play a role in the replication of flavivirus, in view of the importance of polyprotein processing in the regulation of gene expression of positive-stranded RNA viruses, the modulation of processing at the NS3-4A site by NS3 or NS3-containing precursors described in the present study and the importance of NS3 as an integral part of the viral polymerase complex.

摘要

当通过痘苗病毒重组体从cDNA表达、在瞬时转染的COS细胞中表达或通过无细胞翻译合成时,研究了墨累谷脑炎(MVE)病毒从NS2A胞质结构域到NS5 C末端的非结构多蛋白片段的蛋白水解加工过程。由病毒编码的蛋白酶结构域介导的NS2A - 2B、NS2B - 3和NS4B - 5连接处的切割在NS3中被高效催化。然而,同样由NS3蛋白酶介导的NS3 - 4A连接处的切割被大大延迟。几乎没有发现NS3,但积累了一个85K的前体分子;这被鉴定为NS3 - 4A。通过定点诱变在NS3 - 4A、NS4A - 4B和NS4B - 5基因的连接处引入终止密码子,以产生MVE病毒多蛋白片段的C末端截短。在这些构建体的表达研究中,除了NS3 - 4A连接处的切割外,预测的由NS3介导的蛋白水解切割都被催化。在用编码在NS3或NS4A的C末端截短的MVE病毒非结构多蛋白区域的构建体进行共感染和共转染时,诱导了NS3 - 4A位点的有效加工。因此,似乎MVE病毒多蛋白在NS3 - 4A连接处的顺式切割效率低下,而该位点由成熟的NS3在反式中有效加工。NS3 - 4A前体也出现在黄病毒感染的细胞中。其功能尚待确定,但鉴于多蛋白加工在正链RNA病毒基因表达调控中的重要性、本研究中描述的NS3或含NS3的前体对NS3 - 4A位点加工的调节以及NS3作为病毒聚合酶复合物不可或缺的一部分的重要性,它可能在黄病毒的复制中发挥作用。

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