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影响亚急性硬化性全脑炎病毒p基因末端转录终止的突变。

Mutations affecting transcriptional termination in the p gene end of subacute sclerosing panencephalitis viruses.

作者信息

Ayata Minoru, Komase Katsuhiro, Shingai Masashi, Matsunaga Isamu, Katayama Yuko, Ogura Hisashi

机构信息

Department of Virology, Osaka City University Medical School, Asahimachi, Abeno-ku, Osaka 545-8585, Japan.

出版信息

J Virol. 2002 Dec;76(24):13062-8. doi: 10.1128/jvi.76.24.13062-13068.2002.

Abstract

Numerous mutations are found in subacute sclerosing panencephalitis (SSPE) viruses, and the M gene is the gene most commonly affected. In some SSPE viruses, such as the MF, Osaka-1, Osaka-2, and Yamagata-1 strains, translation of the M protein is complicated by a transcriptional defect that leads to an almost exclusive synthesis of dicistronic P-M mRNA. To understand the molecular mechanisms of this defect, we sequenced the P gene at the P-M gene junction for several virus strains and probed the involvement of several mutations in the readthrough region via their expression in measles virus minigenomes containing different sequences of the P-M gene junction and flanking reporter genes. The deletion of a single U residue in the U tract of the Osaka-1 strain (3'-UAAUAUUUUU-5') compared with the consensus sequence resulted in a marked reduction of the expression of the downstream reporter gene. In addition, the expression of the downstream gene was markedly decreased by (i) the substitution of a C residue in the U tract of the P gene end of the OSA-2/Fr/B strain of the Osaka-2 virus (3'-UGAUAUUCUU-5' compared with the sequence 3'-UGAUAUUUUU-5' from a sibling virus of the same strain, OSA-2/Fr/V), and (ii) the substitution of a G in the sequence of the P gene end of the Yamagata-1 strain at a variable site immediately upstream from the six-U tract (3'-UGAUGUUUUUU-5' instead of 3'-UGAUUUUUUUU-5'). Mutations at the P gene end can account for the readthrough transcription variation at the P-M gene junction, which directly affects M protein expression.

摘要

在亚急性硬化性全脑炎(SSPE)病毒中发现了许多突变,其中M基因是最常受影响的基因。在一些SSPE病毒中,如MF、大阪-1、大阪-2和山形-1株,M蛋白的翻译因转录缺陷而变得复杂,这种缺陷导致几乎只合成双顺反子P-M mRNA。为了了解这种缺陷的分子机制,我们对几种病毒株在P-M基因连接处的P基因进行了测序,并通过在含有不同P-M基因连接处序列和侧翼报告基因的麻疹病毒微型基因组中表达,探究了通读区域中几个突变的作用。与共有序列相比,大阪-1株(3'-UAAUAUUUUU-5')的U序列中单个U残基的缺失导致下游报告基因的表达显著降低。此外,下游基因的表达因以下情况而显著降低:(i)大阪-2病毒的OSA-2/Fr/B株P基因末端的U序列中一个C残基的替换(与同一株系的同胞病毒OSA-2/Fr/V的序列3'-UGAUAUUUUU-5'相比为3'-UGAUAUUCUU-5'),以及(ii)山形-1株P基因末端序列中在六个U序列上游紧邻的可变位点处一个G的替换(3'-UGAUGUUUUUU-5'而不是3'-UGAUUUUUUUU-5')。P基因末端的突变可以解释P-M基因连接处的通读转录变异,这直接影响M蛋白的表达。

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