首页> 美国卫生研究院文献>Journal of Bacteriology >A feedback loop regulates the switch from one sigma factor to the next in the cascade controlling Bacillus subtilis mother cell gene expression.
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A feedback loop regulates the switch from one sigma factor to the next in the cascade controlling Bacillus subtilis mother cell gene expression.

机译:反馈回路调节级联控制枯草芽孢杆菌母细胞基因表达中从一个西格玛因子到下一个西​​格玛因子的转换。

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摘要

Regulation of gene expression in the mother cell compartment of sporulating Bacillus subtilis involves sequential activation and inactivation of several transcription factors. Among them are two sigma factors, sigmaE and sigmaK, and a DNA-binding protein, SpoIIID. A decrease in the level of SpoIIID is thought to relieve its repressive effect on transcription by sigmaK RNA polymerase of certain spore coat genes. Previous studies showed that sigmaK negatively regulates the level of spoIIID mRNA. Here, it is shown that sigmaK does not affect the stability of spoIIID mRNA. Rather, sigmaK appears to negatively regulate the synthesis of spoIIID mRNA by accelerating the disappearance of sigmaE RNA polymerase, which transcribes spoIIID. As sigmaK begins to accumulate by 4 h into sporulation, the sigmaE level drops rapidly in wild-type cells but remains twofold to fivefold higher in sigK mutant cells during the subsequent 4 h. In a strain engineered to produce sigmaK 1 h earlier than normal, twofold less sigmaE than that in wild-type cells accumulates. SigmaK did not detectably alter the stability of sigmaE in pulse-chase experiments. However, beta-galactosidase expression from a sigE-lacZ transcriptional fusion showed a pattern similar to the level of sigmaE protein in sigK mutant cells and cells prematurely expressing sigmaK. These results suggest that the appearance of sigmaK initiates a negative feedback loop controlling not only transcription of spoIIID, but the entire sigmaE regulon, by directly or indirectly inhibiting the transcription of sigE.
机译:芽孢杆菌枯草芽孢杆菌的母细胞区室中基因表达的调节涉及几个转录因子的顺​​序激活和失活。其中有两个sigma因子sigmaE和sigmaK,以及一个DNA结合蛋白SpoIIID。据认为,SpoIIID水平的降低可减轻其对某些孢子外壳基因的SigmaK RNA聚合酶对转录的抑制作用。先前的研究表明sigmaK负调节spoIIID mRNA的水平。在这里,表明sigmaK不会影响spoIIID mRNA的稳定性。而是,sigmaK似乎通过加速转录spoIIID的sigmaE RNA聚合酶的消失而负调控spoIIID mRNA的合成。随着sigmaK在开始堆积4小时后进入孢子形成,野生型细胞中的sigmaE水平迅速下降,但在随后的4小时内,在sigK突变细胞中仍然保持2至5倍高。在比正常情况下早1小时产生sigmaK的菌株中,其sigmaE的累积量是野生型细胞的两倍。在脉冲追踪实验中,SigmaK并未可检测地改变sigmaE的稳定性。但是,来自sigE-lacZ转录融合的β-半乳糖苷酶表达显示出与sigK突变细胞和过早表达sigmaK的细胞中sigmaE蛋白水平相似的模式。这些结果表明,sigmaK的出现通过直接或间接抑制sigE的转录,引发了一个负反馈环,该环不仅控制spoIIID的转录,而且还控制整个sigmaE调控子。

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