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首页> 外文期刊>Microbiology >Interaction of Bacillus subtilis extracytoplasmic function (ECF) sigma factors with the N-terminal regions of their potential anti-sigma factors
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Interaction of Bacillus subtilis extracytoplasmic function (ECF) sigma factors with the N-terminal regions of their potential anti-sigma factors

机译:枯草芽孢杆菌的相互作用(ECF)Sigma因子与潜在的抗Σ因素的n末端区域

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Extracytoplasmic function (ECF) sigma factors constitute a diverse family of proteins, within the class of the sigma 70 subunit of RNA polymerase. Most members of the family studied to date are known to regulate gene expression in response to stress conditions. The Bacillus subtilis genome encodes at least 17 distinct sigma factors, seven of which are members of the ECF subfamily. Among these, five sigma factors, namely SigV, SigW, SigX, SigY and SigM, are encoded by the first genes of the cognate sigma operons. Disruption or repressed expression of the downstream gene(s) resulted in transcriptional activation of the cognate sigma operon. Moreover, in vivo protein–protein interaction analyses by yeast two-hybrid experiments indicated that these immediate downstream gene products bind the cognate ECF sigma factor, suggesting that they function as anti-sigma factors by capturing sigma factor on the inner surface of the cytoplasmic membrane. Interaction with other sigma factors was not observed. The results presented here also show that these anti-sigma factors interact with ECF sigma factors through their N-terminal region, implying that the N-terminal domain resides inside the cytoplasmic membrane.
机译:初学功能(ECF)Sigma因子构成了多样化的蛋白质,在RNA聚合酶的Sigma 70亚基类中。据了解迄今为止研究的家庭的大多数成员是为了响应应力条件调节基因表达。枯草芽孢杆菌基因组编码至少17个不同的SIGMA因子,其中7个是ECF亚家族的成员。其中,五种Sigma因子,即Sigv,Sigw,Sigx,Sigy和Sigm由同源Sigma操纵子的第一基因编码。下游基因的破坏或压抑表达导致同源Σ操纵子的转录激活。此外,在酵母双杂交实验中的体内蛋白质 - 蛋白质相互作用分析表明,这些即时下游基因产物结合了同源ECF Sigma因子,表明它们通过捕获细胞质膜的内表面上的Sigma因子来抗Σ因素。 。没有观察到与其他SIGMA因子的相互作用。此处呈现的结果还表明,这些抗Σ因素通过其N-末端区域与ECF Sigma因子相互作用,这意味着N-末端域在细胞质膜内部。

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