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RpoS和群体感应在体外和体内控制霍乱弧菌趋化性簇III蛋白的表达和极性定位。

RpoS and quorum sensing control expression and polar localization of Vibrio cholerae chemotaxis cluster III proteins in vitro and in vivo.

作者信息

Ringgaard Simon, Hubbard Troy, Mandlik Anjali, Davis Brigid M, Waldor Matthew K

机构信息

Department of Ecophysiology, Max Planck Institute for Terrestrial Microbiology, Marburg, 35043, Germany.

Division of Infectious Diseases, Brigham and Women's Hospital, Boston, MA, 02115, USA.

出版信息

Mol Microbiol. 2015 Aug;97(4):660-75. doi: 10.1111/mmi.13053. Epub 2015 Jun 6.

Abstract

The diarrheal pathogen Vibrio cholerae contains three gene clusters that encode chemotaxis-related proteins, but only cluster II appears to be required for chemotaxis. Here, we present the first characterization of V. cholerae's 'cluster III' chemotaxis system. We found that cluster III proteins assemble into foci at bacterial poles, like those formed by cluster II proteins, but the two systems assemble independently and do not colocalize. Cluster III proteins are expressed in vitro during stationary phase and in conjunction with growth arrest linked to carbon starvation. This expression, as well as expression in vivo in suckling rabbits, is dependent upon RpoS. V. cholerae's CAI-1 quorum sensing (QS) system is also required for cluster III expression in stationary phase and modulates its expression in vivo, but is not required for cluster III expression in response to carbon starvation. Surprisingly, even though the CAI-1 and AI-2 QS systems are thought to feed into the same signaling pathway, the AI-2 system inhibited cluster III gene expression, revealing that the outputs of the two QS systems are not always the same. The distinctions between genetic determinants of cluster III expression in vitro and in vivo highlight the distinctive nature of the in vivo environment.

摘要

腹泻病原体霍乱弧菌包含三个编码趋化相关蛋白的基因簇,但似乎只有基因簇II是趋化作用所必需的。在此,我们首次对霍乱弧菌的“基因簇III”趋化系统进行了表征。我们发现,基因簇III的蛋白在细菌两极聚集成焦点,类似于基因簇II的蛋白所形成的焦点,但这两个系统是独立组装的,并不共定位。基因簇III的蛋白在体外稳定期表达,并与因碳饥饿导致的生长停滞相关联。这种表达以及在新生兔体内的表达均依赖于RpoS。霍乱弧菌的CAI-1群体感应(QS)系统对于稳定期基因簇III的表达也是必需的,并在体内调节其表达,但对于因碳饥饿导致的基因簇III表达并非必需。令人惊讶的是,尽管CAI-1和AI-2 QS系统被认为汇入同一条信号通路,但AI-2系统却抑制了基因簇III的基因表达,这表明这两个QS系统的输出并不总是相同的。基因簇III在体外和体内表达的遗传决定因素之间的差异突出了体内环境的独特性质。

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