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芽孢杆菌σ(W)调控子在无胁迫条件下的定义。

Definition of the σ(W) regulon of Bacillus subtilis in the absence of stress.

机构信息

Department of Medical Microbiology, University of Groningen, University Medical Center Groningen, Groningen, The Netherlands.

出版信息

PLoS One. 2012;7(11):e48471. doi: 10.1371/journal.pone.0048471. Epub 2012 Nov 14.

Abstract

Bacteria employ extracytoplasmic function (ECF) sigma factors for their responses to environmental stresses. Despite intensive research, the molecular dissection of ECF sigma factor regulons has remained a major challenge due to overlaps in the ECF sigma factor-regulated genes and the stimuli that activate the different ECF sigma factors. Here we have employed tiling arrays to single out the ECF σ(W) regulon of the Gram-positive bacterium Bacillus subtilis from the overlapping ECF σ(X), σ(Y), and σ(M) regulons. For this purpose, we profiled the transcriptome of a B. subtilis sigW mutant under non-stress conditions to select candidate genes that are strictly σ(W)-regulated. Under these conditions, σ(W) exhibits a basal level of activity. Subsequently, we verified the σ(W)-dependency of candidate genes by comparing their transcript profiles to transcriptome data obtained with the parental B. subtilis strain 168 grown under 104 different conditions, including relevant stress conditions, such as salt shock. In addition, we investigated the transcriptomes of rasP or prsW mutant strains that lack the proteases involved in the degradation of the σ(W) anti-sigma factor RsiW and subsequent activation of the σ(W)-regulon. Taken together, our studies identify 89 genes as being strictly σ(W)-regulated, including several genes for non-coding RNAs. The effects of rasP or prsW mutations on the expression of σ(W)-dependent genes were relatively mild, which implies that σ(W)-dependent transcription under non-stress conditions is not strictly related to RasP and PrsW. Lastly, we show that the pleiotropic phenotype of rasP mutant cells, which have defects in competence development, protein secretion and membrane protein production, is not mirrored in the transcript profile of these cells. This implies that RasP is not only important for transcriptional regulation via σ(W), but that this membrane protease also exerts other important post-transcriptional regulatory functions.

摘要

细菌利用细胞外功能 (ECF) σ 因子来应对环境压力。尽管进行了深入研究,但由于 ECF σ 因子调控基因和激活不同 ECF σ 因子的刺激因素之间存在重叠,因此对 ECF σ 因子调控子的分子剖析仍然是一个主要挑战。在这里,我们采用平铺阵列从重叠的 ECF σ(X)、σ(Y)和 σ(M)调控子中分离出革兰氏阳性细菌枯草芽孢杆菌的 ECF σ(W)调控子。为此,我们在非胁迫条件下对 B. subtilis sigW 突变体的转录组进行了分析,以选择严格受 σ(W)调控的候选基因。在这些条件下,σ(W) 表现出基础水平的活性。随后,我们通过比较候选基因的转录谱与亲本 B. subtilis 菌株 168 在 104 种不同条件下(包括相关的应激条件,如盐休克)获得的转录组数据,验证了候选基因的 σ(W)依赖性。此外,我们还研究了缺乏参与降解 σ(W)反σ 因子 RsiW 并随后激活 σ(W)调控子的蛋白酶的 rasP 或 prsW 突变株的转录组。总的来说,我们的研究确定了 89 个基因是严格受 σ(W)调控的,包括几个非编码 RNA 基因。rasP 或 prsW 突变对 σ(W)依赖基因表达的影响相对较弱,这意味着非应激条件下 σ(W)依赖的转录与 RasP 和 PrsW 没有严格的关系。最后,我们表明 rasP 突变细胞的多效表型,这些细胞在感受态发育、蛋白质分泌和膜蛋白产生方面存在缺陷,在这些细胞的转录谱中并没有反映出来。这意味着 RasP 不仅对通过 σ(W)进行的转录调控很重要,而且这种膜蛋白酶还具有其他重要的转录后调控功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e714/3498285/1bde72e6f7c3/pone.0048471.g001.jpg

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