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孤子双组分系统传感器激酶 ChiS 通过非典型跨膜调节剂调节霍乱弧菌的自然感受性。

Regulation of natural competence by the orphan two-component system sensor kinase ChiS involves a non-canonical transmembrane regulator in Vibrio cholerae.

机构信息

Department of Bacteriology I, National Institute of Infectious Diseases, Toyama 1-23-1, Shinjuku-ku, Tokyo, 162-8640, Japan.

出版信息

Mol Microbiol. 2014 Jan;91(2):326-47. doi: 10.1111/mmi.12462. Epub 2013 Dec 1.

DOI:10.1111/mmi.12462
PMID:24236404
Abstract

In Vibrio cholerae, 41 chitin-inducible genes, including the genes involved in natural competence for DNA uptake, are governed by the orphan two-component system (TCS) sensor kinase ChiS. However, the mechanism by which ChiS controls the expression of these genes is currently unknown. Here, we report the involvement of a novel transcription factor termed 'TfoS' in this process. TfoS is a transmembrane protein that contains a large periplasmic domain and a cytoplasmic AraC-type DNA-binding domain, but lacks TCS signature domains. Inactivation of tfoS abolished natural competence as well as transcription of the tfoR gene encoding a chitin-induced small RNA essential for competence gene expression. A TfoS fragment containing the DNA-binding domain specifically bound to and activated transcription from the tfoR promoter. Intracellular TfoS levels were unaffected by disruption of chiS and coexpression of TfoS and ChiS in Escherichia coli recovered transcription of the chromosomally integrated tfoR::lacZ gene, suggesting that TfoS is post-translationally modulated by ChiS during transcriptional activation; however, this regulation persisted when the canonical phosphorelay residues of ChiS were mutated. The results presented here suggest that ChiS operates a chitin-induced non-canonical signal transduction cascade through TfoS, leading to transcriptional activation of tfoR.

摘要

在霍乱弧菌中,41 个几丁质诱导基因,包括参与 DNA 摄取自然感受能力的基因,受孤儿双组分系统(TCS)传感器激酶 ChiS 控制。然而,ChiS 控制这些基因表达的机制目前尚不清楚。在这里,我们报告了一种新型转录因子“TfoS”在这个过程中的参与。TfoS 是一种跨膜蛋白,含有一个大的周质域和一个细胞质 AraC 型 DNA 结合域,但缺乏 TCS 特征域。tfoS 的失活消除了自然感受能力以及编码对感受能力基因表达至关重要的几丁质诱导小 RNA 的 tfoR 基因的转录。含有 DNA 结合域的 TfoS 片段特异性结合并激活 tfoR 启动子的转录。chiS 破坏和大肠杆菌中 TfoS 和 ChiS 的共表达对细胞内 TfoS 水平没有影响,恢复了染色体整合的 tfoR::lacZ 基因的转录,这表明 TfoS 在转录激活过程中被 ChiS 进行翻译后修饰;然而,当 ChiS 的经典磷酸接力残基发生突变时,这种调节仍然存在。这里提出的结果表明,ChiS 通过 TfoS 操纵一种几丁质诱导的非典型信号转导级联反应,导致 tfoR 的转录激活。

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