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布鲁氏菌流产毒力调节剂LovhK是一般应激反应信号通路中的一种传感激酶。

The Brucella abortus virulence regulator, LovhK, is a sensor kinase in the general stress response signalling pathway.

作者信息

Kim Hye-Sook, Willett Jonathan W, Jain-Gupta Neeta, Fiebig Aretha, Crosson Sean

机构信息

The Department of Biochemistry and Molecular Biology, University of Chicago, Chicago, IL, USA; Howard Taylor Ricketts Laboratory, University of Chicago, Argonne National Laboratory, Argonne, IL, USA.

出版信息

Mol Microbiol. 2014 Nov;94(4):913-25. doi: 10.1111/mmi.12809. Epub 2014 Oct 19.

Abstract

In the intracellular pathogen Brucella abortus, the general stress response (GSR) signalling system determines survival under acute stress conditions in vitro, and is required for long-term residence in a mammalian host. To date, the identity of the Brucella sensor kinase(s) that function to perceive stress and directly activate GSR signalling have remained undefined. We demonstrate that the flavin-binding sensor histidine kinase, LovhK (bab2_0652), functions as a primary B. abortus GSR sensor. LovhK rapidly and specifically phosphorylates the central GSR regulator, PhyR, and activates transcription of a set of genes that closely overlaps the known B. abortus GSR regulon. Deletion of lovhK severely compromises cell survival under defined oxidative and acid stress conditions. We further show that lovhK is required for cell survival during the early phase of mammalian cell infection and for establishment of long-term residence in a mouse infection model. Finally, we present evidence that particular regions of primary structure within the two N-terminal PAS domains of LovhK have distinct sensory roles under specific environmental conditions. This study elucidates new molecular components of a conserved signalling pathway that regulates B. abortus stress physiology and infection biology.

摘要

在细胞内病原体流产布鲁氏菌中,一般应激反应(GSR)信号系统决定了其在体外急性应激条件下的存活能力,并且是其在哺乳动物宿主体内长期存活所必需的。迄今为止,流产布鲁氏菌中负责感知应激并直接激活GSR信号的传感器激酶的身份仍不明确。我们证明,黄素结合传感器组氨酸激酶LovhK(bab2_0652)作为流产布鲁氏菌主要的GSR传感器发挥作用。LovhK能快速且特异性地磷酸化GSR核心调节因子PhyR,并激活一组与已知的流产布鲁氏菌GSR调控子密切重叠的基因的转录。在特定的氧化和酸应激条件下,缺失lovhK会严重损害细胞的存活能力。我们进一步表明,lovhK是哺乳动物细胞感染早期细胞存活以及在小鼠感染模型中建立长期存活所必需的。最后,我们提供证据表明,LovhK两个N端PAS结构域内特定的一级结构区域在特定环境条件下具有不同的传感作用。这项研究阐明了调节流产布鲁氏菌应激生理学和感染生物学的保守信号通路的新分子成分。

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