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形态学事件和细胞间相互作用在枯草芽孢杆菌芽孢形成过程中对芽孢前体特异性基因表达调控中的重要性。

The importance of morphological events and intercellular interactions in the regulation of prespore-specific gene expression during sporulation in Bacillus subtilis.

作者信息

Partridge S R, Errington J

机构信息

Sir William Dunn School of Pathology, University of Oxford, UK.

出版信息

Mol Microbiol. 1993 May;8(5):945-55. doi: 10.1111/j.1365-2958.1993.tb01639.x.

Abstract

We have established a time course for the early morphological events of sporulation in Bacillus subtilis and related this to changes in gene expression, particularly those occurring in the prespore compartment. We have also systematically studied the effects of mutations in various regulatory (spo) genes on prespore-specific gene expression. On the basis of these results, and those of other laboratories, at least four distinct temporal classes of prespore-specific gene expression can now be distinguished. The first class begins within 15 min of the formation of the spore septum, and requires the sigma F form of RNA polymerase. The second class, also directed by RNA polymerase containing sigma F, begins soon after the completion of prespore engulfment, and depends on an intercellular signal from the mother cell. This transcription results in synthesis of sigma G. However, sigma G activity, directing the third class of gene expression, appears only about 30 min later and is dependent on the completion of prespore engulfment and on further interactions with the mother cell. The fourth class of gene expression has been described. The results demonstrate that the prespore programme of gene expression incorporates a series of control points modulated by information from the mother cell and on progress through the morphogenetic process.

摘要

我们已经确定了枯草芽孢杆菌孢子形成早期形态学事件的时间进程,并将其与基因表达的变化相关联,特别是那些发生在前芽孢区室中的变化。我们还系统地研究了各种调控(spo)基因突变对前芽孢特异性基因表达的影响。基于这些结果以及其他实验室的结果,现在至少可以区分出四类不同时间的前芽孢特异性基因表达。第一类在芽孢隔膜形成后15分钟内开始,需要RNA聚合酶的σF形式。第二类同样由含有σF的RNA聚合酶指导,在前芽孢吞噬完成后不久开始,并且依赖于来自母细胞的细胞间信号。这种转录导致σG的合成。然而,指导第三类基因表达的σG活性大约在30分钟后才出现,并且依赖于前芽孢吞噬的完成以及与母细胞的进一步相互作用。第四类基因表达已经被描述。结果表明,前芽孢基因表达程序包含一系列由来自母细胞的信息以及形态发生过程中的进展所调节的控制点。

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