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水泡性口炎病毒基质蛋白对宿主RNA聚合酶I、II和III指导的转录的影响。

Effect of vesicular stomatitis virus matrix protein on transcription directed by host RNA polymerases I, II, and III.

作者信息

Ahmed M, Lyles D S

机构信息

Department of Microbiology and Immunology, Wake Forest University School of Medicine, Winston-Salem, North Carolina 27157, USA.

出版信息

J Virol. 1998 Oct;72(10):8413-9. doi: 10.1128/JVI.72.10.8413-8419.1998.

Abstract

The matrix (M) protein of vesicular stomatitis virus (VSV) functions in virus assembly and inhibits host-directed gene expression independently of other viral components. Experiments in this study were carried out to determine the ability of M protein to inhibit transcription directed by each of the three host RNA polymerases (RNA polymerase I [RNAPI], RNAPII, and RNAPIII). The effects of wild-type (wt) VSV, v6 (a VSV mutant isolated from persistently infected cells), and tsO82 viruses on poly(A)+ and poly(A)- RNA synthesis were measured by incorporation of [3H]uridine. v6 and tsO82 viruses, which contain M-gene mutations, had a decreased ability to inhibit synthesis of both poly(A)+ and poly(A)- RNA. Nuclear runoff analysis showed that VSV inhibited transcription of 18S rRNA and alpha-tubulin genes, which was dependent on RNAPI and RNAPII, respectively, but infection with wt virus enhanced transcription of 5S rRNA by RNAPIII. The effect of M protein alone on transcription by RNAPI-, RNAPII-, and RNAPIII-dependent promoters was measured by cotransfection assays. M protein inhibited transcription from RNAPI- and RNAPII-dependent promoters in the absence of other viral gene products. RNAPIII-dependent transcription of the adenovirus VA promoters was also inhibited by M protein. However, as observed during wt VSV infection, M protein enhanced endogenous 5S rRNA transcription, indicating that the inhibition of transcription by RNAPIII was dependent on the nature of the promoter.

摘要

水泡性口炎病毒(VSV)的基质(M)蛋白在病毒组装过程中发挥作用,并且独立于其他病毒成分抑制宿主导向的基因表达。本研究开展了实验,以确定M蛋白抑制三种宿主RNA聚合酶(RNA聚合酶I [RNAPI]、RNAPII和RNAPIII)各自介导的转录的能力。通过掺入[3H]尿苷来测量野生型(wt)VSV、v6(一种从持续感染细胞中分离出的VSV突变体)和tsO82病毒对多聚腺苷酸(poly(A)+)和非多聚腺苷酸(poly(A)-)RNA合成的影响。含有M基因突变的v6和tsO82病毒抑制poly(A)+和poly(A)- RNA合成的能力下降。细胞核径流分析表明,VSV抑制18S rRNA和α-微管蛋白基因的转录,这分别依赖于RNAPI和RNAPII,但野生型病毒感染增强了RNAPIII对5S rRNA的转录。通过共转染试验测量单独的M蛋白对依赖于RNAPI、RNAPII和RNAPIII的启动子转录的影响。在没有其他病毒基因产物的情况下,M蛋白抑制依赖于RNAPI和RNAPII的启动子的转录。腺病毒VA启动子依赖于RNAPIII的转录也受到M蛋白的抑制。然而,正如在野生型VSV感染期间所观察到的,M蛋白增强了内源性5S rRNA转录,表明RNAPIII对转录的抑制取决于启动子的性质。

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