对水平获得的应答调节因子EsrB的转录组学剖析揭示了其在杀鲑气单胞菌爱德华氏菌感染大菱鲆过程中,对T3SS的生理适应和激活以及相关效应子库中的全局调控作用。

Transcriptomic dissection of the horizontally acquired response regulator EsrB reveals its global regulatory roles in the physiological adaptation and activation of T3SS and the cognate effector repertoire in Edwardsiella piscicida during infection toward turbot.

作者信息

Liu Yang, Zhao Luyao, Yang Minjun, Yin Kaiyu, Zhou Xiaohui, Leung Ka Yin, Liu Qin, Zhang Yuanxing, Wang Qiyao

机构信息

a State Key Laboratory of Bioreactor Engineering , East China University of Science and Technology , Shanghai , China.

b Shanghai-MOST Key Laboratory of Health and Disease Genomics , Chinese National Human Genome Center at Shanghai , Shanghai , China.

出版信息

Virulence. 2017 Oct 3;8(7):1355-1377. doi: 10.1080/21505594.2017.1323157. Epub 2017 Apr 25.

Abstract

Edwardsiella piscicida is the leading pathogen threatening worldwide aquaculture industries. The 2-component system (TCS) EsrA-EsrB is essential for the pathogenesis of this bacterium. However, little is known about the regulon and regulatory mechanism of EsrA-EsrB or about the factors that mediate the interaction of TCS with bacterial hosts. Here, our RNA-seq analysis indicated that EsrB strongly induces type III and type VI secretion systems (T3/T6SS) expression and that it modulates the expression of both physiology- and virulence-associated genes in E. piscicida grown in DMEM. EsrB binds directly to a highly conserved 18-bp DNA motif to regulate the expression of T3SS and other genes. EsrB/DMEM-activated genes include 3 known and 6 novel T3SS-dependent effectors. All these effector genes are highly induced by EsrB during the late stage of in vivo infection in fish. Furthermore, although in vivo colonization by the bacterium relies on EsrB and T3/T6SS expression, it does not require the expression of individual effectors other than EseJ. The mutant lacking these 9 effectors showed significant defects in in vivo colonization and virulence toward turbot, and, more importantly, a high level of protection against challenges by wild-type E. piscicida, suggesting that it may represent a promising live attenuated vaccine. Taken together, our data demonstrate that EsrB plays a global regulatory role in controlling physiologic responses and the expression of T3SS and its cognate effector genes. Our findings will facilitate further work on the mechanism of molecular pathogenesis of this bacterium during infection.

摘要

杀鱼爱德华氏菌是威胁全球水产养殖业的主要病原体。双组分系统(TCS)EsrA-EsrB对该细菌的致病作用至关重要。然而,关于EsrA-EsrB的调控子和调控机制,或者介导TCS与细菌宿主相互作用的因素,我们所知甚少。在这里,我们的RNA测序分析表明,EsrB强烈诱导III型和VI型分泌系统(T3/T6SS)的表达,并且它调节在DMEM中生长的杀鱼爱德华氏菌中生理相关基因和毒力相关基因的表达。EsrB直接结合到一个高度保守的18碱基对DNA基序上,以调节T3SS和其他基因的表达。EsrB/ DMEM激活的基因包括3个已知的和6个新的T3SS依赖性效应蛋白。所有这些效应蛋白基因在鱼体内感染后期都被EsrB高度诱导。此外,虽然该细菌在体内的定殖依赖于EsrB和T3/T6SS的表达,但除了EseJ之外,它不需要单个效应蛋白的表达。缺乏这9种效应蛋白的突变体在体内定殖和对大菱鲆的毒力方面表现出明显缺陷,更重要的是,它对野生型杀鱼爱德华氏菌的攻击具有高度保护作用,这表明它可能是一种有前景的减毒活疫苗。综上所述,我们的数据表明EsrB在控制生理反应以及T3SS及其同源效应蛋白基因的表达方面发挥着全局调控作用。我们的发现将有助于进一步研究该细菌在感染过程中的分子致病机制。

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