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首页> 外文期刊>Molecular Microbiology >The Vibrio cholerae virulence regulatory cascade controls glucose uptake through activation of TarA, a small regulatory RNA.
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The Vibrio cholerae virulence regulatory cascade controls glucose uptake through activation of TarA, a small regulatory RNA.

机译:霍乱弧菌毒力调节级联反应通过激活TarA(一种小的调节RNA)来控制葡萄糖的摄取。

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摘要

Vibrio cholerae causes the severe diarrhoeal disease cholera. A cascade of regulators controls expression of virulence determinants in V. cholerae at both transcriptional and post-transcriptional levels. ToxT is the direct transcription activator of the major virulence genes in V. cholerae. Here we describe TarA, a highly conserved, small regulatory RNA, whose transcription is activated by ToxT from toxboxes present upstream of the ToxT-activated gene tcpI. TarA regulates ptsG, encoding a major glucose transporter in V. cholerae. Cells overexpressing TarA exhibit decreased steady-state levels of ptsG mRNA and grow poorly in glucose-minimal media. A mutant lacking the ubiquitous regulatory protein Hfq expresses diminished TarA levels, indicating that TarA likely interacts with Hfq to regulate gene expression. RNAhybrid analysis of TarA and the putative ptsG mRNA leader suggests potential productive base-pairing between these two RNA molecules. A V. cholerae mutant lacking TarA is compromised for infant mouse colonization in competition with wild type, suggesting a role in the in vivo fitness of V. cholerae. Although somewhat functionally analogous to SgrS of Escherichia coli, TarA does not encode a regulatory peptide, and its expression is activated by the virulence gene pathway in V. cholerae and not by glycolytic intermediates.
机译:霍乱弧菌引起严重的腹泻性霍乱。一系列调节剂在转录和转录后水平上控制霍乱弧菌中毒力决定簇的表达。 ToxT是霍乱弧菌主要毒力基因的直接转录激活因子。在这里,我们描述了TarA,一种高度保守的小型调节RNA,其转录被ToxT从ToxT激活基因tcpI上游的toxboxs激活。 TarA调节ptsG,它编码霍乱弧菌中的主要葡萄糖转运蛋白。过量表达TarA的细胞在ptsG mRNA的稳态水平降低,并且在葡萄糖最小的培养基中生长较差。缺少普遍存在的调节蛋白Hfq的突变体表达的TarA水平降低,表明TarA可能与Hfq相互作用以调节基因表达。 TarA和推定的ptsG mRNA前导序列的RNA杂交分析表明,这两个RNA分子之间可能具有生产性碱基配对。缺少TarA的霍乱弧菌突变体在与野生型竞争中被婴儿小鼠定植折中,表明在霍乱弧菌的体内适应性中起作用。尽管在功能上类似于大肠杆菌的SgrS,但TarA不编码调节肽,其表达是通过霍乱弧菌中的毒力基因途径而不是通过糖酵解中间体来激活的。

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