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双重转录调节因子RovM可响应假结核耶尔森菌的营养状况,调节AR3和T6SS4依赖性酸存活系统的表达。

The dual transcriptional regulator RovM regulates the expression of AR3- and T6SS4-dependent acid survival systems in response to nutritional status in Yersinia pseudotuberculosis.

作者信息

Song Yunhong, Xiao Xiao, Li Changfu, Wang Tietao, Zhao Ruoxi, Zhang Weipeng, Zhang Lei, Wang Yao, Shen Xihui

机构信息

State Key Laboratory of Crop Stress Biology for Arid Areas and College of Life Sciences, Northwest A&F University, Yangling, Shaanxi, 712100, China.

出版信息

Environ Microbiol. 2015 Nov;17(11):4631-45. doi: 10.1111/1462-2920.12996. Epub 2015 Sep 3.

Abstract

Coordinated regulation of various acid survival systems in response to environmental stimuli is crucial for the adaptation of enteropathogenic bacteria to acidic environments such as the stomach. In this study, we demonstrated that the RovM protein, a central regulator of the CsrABC-RovM-RovA cascade, conversely regulates the expression of two acid survival systems in Yersinia pseudotuberculosis by acting as a dual transcriptional regulator. RovM activated the expression of T6SS4, which is essential for bacterial survival under mild acidic conditions, by binding upstream of the T6SS4 promoter. On the contrary, RovM repressed the expression of a functional arginine-dependent acid resistance system (AR3), which is crucial for bacterial survival under strong acidic conditions, by directly binding to the -35 element in the AR3 promoter. Consistent with previous findings that rovM expression responds to the availability of nutrients, the expression of T6SS4 and AR3 was differentially regulated by nutritional status. Based on these results, a dynamic model whereby RovM coordinately regulates the expression of AR3 and T6SS4 in response to the availability of nutrients in the environment was proposed.

摘要

各种酸生存系统响应环境刺激的协同调节对于肠道致病菌适应酸性环境(如胃部)至关重要。在本研究中,我们证明了RovM蛋白作为CsrABC-RovM-RovA级联反应的核心调节因子,通过作为双重转录调节因子,反向调节假结核耶尔森菌中两种酸生存系统的表达。RovM通过结合T6SS4启动子上游来激活T6SS4的表达,T6SS4对于细菌在轻度酸性条件下的生存至关重要。相反,RovM通过直接结合AR3启动子中的-35元件来抑制功能性精氨酸依赖性酸抗性系统(AR3)的表达,AR3对于细菌在强酸性条件下的生存至关重要。与之前关于rovM表达对营养物质可用性有响应的发现一致,T6SS4和AR3的表达受营养状态的差异调节。基于这些结果,提出了一个动态模型,即RovM根据环境中营养物质的可用性来协同调节AR3和T6SS4的表达。

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