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枯草芽孢杆菌中一种芽孢形成σ因子的加工:形态结构如何控制基因表达。

Processing of a sporulation sigma factor in Bacillus subtilis: how morphological structure could control gene expression.

作者信息

Stragier P, Bonamy C, Karmazyn-Campelli C

机构信息

Institut de Microbiologie, Université Paris-Sud, Orsay, France.

出版信息

Cell. 1988 Mar 11;52(5):697-704. doi: 10.1016/0092-8674(88)90407-2.

Abstract

Sporulation of Bacillus subtilis is a primitive example of coupling between morphological changes and timing of gene expression during development. A major early control of transcriptional activity is dependent on a new sigma factor, sigma E, which is encoded by the sigE gene and synthesized as an inactive precursor, pro-sigma E. We show that mutations in the spoIIGA gene block the processing of pro-sigma E. Moreover, synthesis of both spoIIGA and sigE products in vegetative cells leads to expression of a sigma E-controlled promoter during growth, suggesting that SpoIIGA has pro-sigma E processing activity. The SpoIIGA polypeptide, which contains five potential transmembrane domains, is synthesized during sporulation 1 hr before processing activity can be detected. We propose that SpoIIGA processing activity is triggered by the presence of the sporulation septum, which is itself dependent on the spoIIAA and spoIIE products. These proteins are normally needed for pro-sigma E processing during sporulation but can be bypassed in vegetative cells. According to this model, a morphological structure would directly control the synthesis of a developmental sigma factor and would modify gene expression.

摘要

枯草芽孢杆菌的芽孢形成是发育过程中形态变化与基因表达时间耦合的一个原始例子。转录活性的主要早期控制依赖于一种新的σ因子,即σE,它由sigE基因编码,并以前体形式合成,即前体σE。我们发现spoIIGA基因的突变会阻止前体σE的加工。此外,在营养细胞中同时合成spoIIGA和sigE产物会导致生长期间由σE控制的启动子表达,这表明SpoIIGA具有前体σE加工活性。含有五个潜在跨膜结构域的SpoIIGA多肽在芽孢形成过程中于加工活性可检测到前1小时合成。我们提出,SpoIIGA加工活性是由芽孢形成隔膜的存在触发的,而芽孢形成隔膜本身依赖于spoIIAA和spoIIE产物。这些蛋白质在芽孢形成过程中通常是前体σE加工所必需的,但在营养细胞中可以被绕过。根据这个模型,一种形态结构将直接控制发育性σ因子的合成,并会改变基因表达。

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