首页> 美国卫生研究院文献>Journal of Bacteriology >Disappearance of the sigma E transcription factor from the forespore and the SpoIIE phosphatase from the mother cell contributes to establishment of cell-specific gene expression during sporulation in Bacillus subtilis.
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Disappearance of the sigma E transcription factor from the forespore and the SpoIIE phosphatase from the mother cell contributes to establishment of cell-specific gene expression during sporulation in Bacillus subtilis.

机译:前孢子中σE转录因子的消失和母细胞中SpoIIE磷酸酶的消失有助于枯草芽孢杆菌在孢子形成过程中细胞特异性基因表达的建立。

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摘要

We used immunofluorescence microscopy to investigate mechanisms governing the establishment of cell-specific gene transcription during sporulation in the bacterium Bacillus subtilis. The transcription factors sigma E and sigma F are synthesized shortly after the start of sporulation but do not become active in directing gene transcription until after polar division, when the activity of sigma E is confined to the mother cell and the activity of sigma F is restricted to the forespore. We show that shortly after septation, sigma E and its proprotein precursor pro-sigma E appear to be absent from the forespore and that a null mutation in spoIIIE, a gene known to be required for the translocation of a chromosome into the forespore, allows sigma E and/or pro-sigma E to persist and sigma E to become active in the forespore. These findings suggest that the loss of sigma E/pro-sigma E from the forespore contributes to the compartmentalization of sigma E-directed gene transcription. We also investigated the distribution of SpoIIE, a regulatory phosphatase required for the activation of sigma F which exhibits a bipolar pattern of localization shortly after the start of sporulation. Normally, SpoIIE rapidly disappears from the sporangium, first from the mother-cell pole and then from the forespore pole. Here we show that a null mutation in spoIIIE causes the SpoIIE phosphatase to persist at both poles. The persistence of the SpoIIE phosphatase at the mother-cell pole could explain the lack of compartmentalization of sigma F activity observed in a spoIIIE null mutant. We conclude that the establishment of cell-specific gene transcription involves the loss of sigma E/pro-sigma E from the forespore and the loss of the SpoIIE phosphatase from the mother-cell pole and that both processes are dependent upon the SpoIIIE protein.
机译:我们使用免疫荧光显微镜来研究在枯草芽孢杆菌中孢子形成过程中控制细胞特异性基因转录建立的机制。转录因子sigma E和sigma F在孢子形成开始后不久就合成,但直到极性分裂后才在指导基因转录中发挥作用,此时sigma E的活性仅限于母细胞并且sigma F的活性受到限制到forespore。我们显示,隔壁后不久,前孢子中似乎不存在sigma E及其前体蛋白pro-sigma E,并且spoIIIE(一个已知的染色体易位到forespore所需的基因)中的空突变使sigma E和/或前σE持续存在,而σE在前孢子中变得活跃。这些发现表明,来自前孢子的sigma E / pro-sigma E的丢失有助于sigma E定向基因转录的区室化。我们还研究了SpoIIE的分布,SpoIIE是激活sigma F所需的一种调节性磷酸酶,它在孢子形成开始后不久就呈现出双极定位模式。通常,SpoIIE会从孢子囊迅速消失,首先从母细胞极消失,然后从子孢子极消失。在这里,我们显示spoIIIE中的无效突变会导致SpoIIE磷酸酶在两个极点均持续存在。 SpoIIE磷酸酶在母细胞极的持久性可以解释缺乏在spoIIIE null突变体中观察到的sigma F活性的区室化。我们得出的结论是,细胞特异性基因转录的建立涉及到来自前孢子的sigma E / pro-sigma E的丢失和来自母细胞极的SpoIIE磷酸酶的丢失,并且这两个过程都依赖于SpoIIIE蛋白。

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