首页> 美国卫生研究院文献>Journal of Virology >Temperature-sensitive mutations in the gene encoding the small subunit of the vaccinia virus early transcription factor impair promoter binding transcription activation and packaging of multiple virion components.
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Temperature-sensitive mutations in the gene encoding the small subunit of the vaccinia virus early transcription factor impair promoter binding transcription activation and packaging of multiple virion components.

机译:痘苗病毒早期转录因子的小亚基编码基因中的温度敏感突变会损害启动子结合转录激活和多种病毒体组分的包装。

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摘要

The vaccinia virus D6R open reading frame encodes the small subunit of the heterodimeric vaccinia virus early transcription factor (VETF) that activates transcription of early genes in vitro. VETF binds early gene promoters and has a DNA-dependent ATPase activity that is essential for activation of transcription. To examine the relationship between the structure and function of VETF, we have localized the mutations in two temperature-sensitive viruses whose lesions previously were mapped to the D6R gene. For both mutants, a single G-to-A nucleotide change that would alter protein coding potential was identified. In mutant E93, the codon for alanine 25 was changed to that of threonine, and in mutant S4 the codon for valine 278 was replaced with that for methionine. The molecular phenotype of each mutant was assessed by expressing mutant transcription factors in HeLa cells by using a vaccinia virus-T7 system and characterizing the proteins' activities in vitro. The A25T mutant activated transcription to a lesser extent than wild-type VETF, and the V278M mutant had no demonstrable transcription factor activity. Both mutant proteins were shown to be defective for promoter binding, accounting for their impairment in transcription activation. The functional defects for both mutants were observed at permissive as well as nonpermissive temperatures. The mutant proteins retained ATPase activity but required higher DNA concentrations to activate the ATPase. These results indicate that the small subunit of VETF is essential for its promoter binding activity and likely contacts the promoter DNA. Immunoblotting experiments showed that the virion particles from the two mutant viruses contained about half the VETF of wild-type virus, suggesting that promoter binding may contribute to packaging of VETF into the virion particle. RNA polymerase, mRNA capping enzyme, and nucleoside triphosphate phosphohydrolase I were found at similarly reduced levels in the virion, indicating that packaging of some virion core enzymes may be interdependent.
机译:牛痘病毒D6R开放阅读框编码异二聚体牛痘病毒早期转录因子(VETF)的小亚基,可在体外激活早期基因的转录。 VETF结合早期基因启动子,并具有依赖DNA的ATPase活性,这对于激活转录至关重要。为了检查VETF的结构和功能之间的关系,我们已经将突变定位在两个温度敏感病毒中,该病毒的损伤先前已定位到D6R基因。对于这两个突变体,鉴定出将改变蛋白质编码潜能的单个G-to-A核苷酸改变。在突变体E93中,将丙氨酸25的密码子更改为苏氨酸,在突变体S4中,将缬氨酸278的密码子替换为蛋氨酸。通过使用牛痘病毒-T7系统在HeLa细胞中表达突变体转录因子并表征其蛋白质的体外活性,来评估每个突变体的分子表型。与野生型VETF相比,A25T突变体激活转录的程度较小,而V278M突变体没有可证明的转录因子活性。两种突变蛋白均显示出启动子结合缺陷,这说明它们在转录激活中的损伤。在容许温度和非容许温度下都观察到两个突变体的功能缺陷。突变蛋白保留了ATPase的活性,但需要更高的DNA浓度才能激活ATPase。这些结果表明,VETF的小亚基对其启动子结合活性至关重要,并可能与启动子DNA接触。免疫印迹实验表明,来自两种突变病毒的病毒粒子含有约一半野生型病毒的VETF,这表明启动子结合可能有助于将VETF包装到病毒粒子中。在病毒体中发现RNA聚合酶,mRNA封端酶和核苷三磷酸磷酸水解酶I的含量降低了,这表明某些病毒体核心酶的包装可能是相互依赖的。

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