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甲病毒26S信使核糖核酸转录受复制酶组分nsP2的调控。

Regulation of alphavirus 26S mRNA transcription by replicase component nsP2.

作者信息

Suopanki J, Sawicki D L, Sawicki S G, Kääriäinen L

机构信息

Biocenter Viikki, Institute of Biotechnology, University of Helsinki, Finland.

出版信息

J Gen Virol. 1998 Feb;79 ( Pt 2):309-19. doi: 10.1099/0022-1317-79-2-309.

Abstract

Semliki Forest virus (SFV) mutant ts4 has a reversible temperature-sensitive defect in the synthesis the subgenomic 26S mRNA. The viral nonstructural protein nsP2 was identified as a regulator of 26S synthesis by transferring nsP2 coding sequences from ts4 into the infectious SFV cDNA clone (SFoto) to create SFots4. Sequencing identified the causal mutation as C4038U, predicting the amino acid change M781T in nsP2. A revertant was isolated in which a back mutation of U to C restored the wild-type phenotype. Compared to Sindbis virus nsP2 mutants ts15, ts17, ts18, ts24 and ts133, which also exhibit temperature-sensitive 26S RNA synthesis, ts4 and SFots4 reduced 26S RNA synthesis faster and to lower levels after temperature shift. Under these conditions, ts4 and SFots4 also displayed complete conversion of RFII+RFIII into RFI and reactivated minus-strand synthesis. After shift to 39 degrees C, ts4 nsP2 was released from a crude RNA polymerase preparation consisting of membranes sedimenting at 15,000 g (P15) and the remaining, unreleased nsP2 was capable of being cross-linked in almost equimolar ratio with nsP1 and nsP3. This supports the hypothesis that nsP2 binds directly or undirectly to the promoter for 26S RNA and that it is also an essential component of the viral replicase synthesizing 42S RNA plus strands. Only the former activity is temperature-sensitive in ts4 mutant.

摘要

辛德毕斯森林病毒(SFV)突变体ts4在亚基因组26S mRNA的合成中存在可逆的温度敏感缺陷。通过将ts4的非结构蛋白nsP2编码序列转移到感染性SFV cDNA克隆(SFoto)中以创建SFots4,确定病毒非结构蛋白nsP2为26S合成的调节因子。测序确定致病突变是C4038U,预测nsP2中的氨基酸变化为M781T。分离出一个回复突变体,其中U到C的反向突变恢复了野生型表型。与也表现出温度敏感的26S RNA合成的辛德毕斯病毒nsP2突变体ts15、ts17、ts18、ts24和ts133相比,ts4和SFots4在温度变化后26S RNA合成降低得更快且水平更低。在这些条件下,ts4和SFots4还显示出RFII + RFIII完全转化为RFI并重新激活负链合成。转移到39摄氏度后,ts4 nsP2从由15,000 g沉淀的膜组成的粗RNA聚合酶制剂中释放出来,剩余未释放的nsP2能够与nsP1和nsP3以几乎等摩尔比交联。这支持了nsP2直接或间接结合26S RNA启动子的假设,并且它也是合成42S RNA正链的病毒复制酶的重要组成部分。在ts4突变体中只有前一种活性是温度敏感的。

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