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EupR(一种 NarL/FixJ 家族的应答调节子)参与了嗜盐菌 Chromohalobacter salexigens 摄取兼容溶质 euctines 的调控。

Involvement of EupR, a response regulator of the NarL/FixJ family, in the control of the uptake of the compatible solutes ectoines by the halophilic bacterium Chromohalobacter salexigens.

机构信息

Department of Microbiology and Parasitology, Faculty of Pharmacy, University of Seville, Seville, Spain.

出版信息

BMC Microbiol. 2010 Oct 13;10:256. doi: 10.1186/1471-2180-10-256.

Abstract

BACKGROUND

Osmosensing and associated signal transduction pathways have not yet been described in obligately halophilic bacteria. Chromohalobacter salexigens is a halophilic bacterium with a broad range of salt tolerance. In response to osmotic stress, it synthesizes and accumulates large amounts of the compatible solutes ectoine and hydroxyectoine. In a previous work, we showed that ectoines can be also accumulated upon transport from the external medium, and that they can be used as carbon sources at optimal, but not at low salinity. This was related to an insufficient ectoine(s) transport under these conditions.

RESULTS

A C. salexigens Tn1732-induced mutant (CHR95) showed a delayed growth with glucose at low and optimal salinities, could not grow at high salinity, and was able to use ectoines as carbon sources at low salinity. CHR95 was affected in the transport and/or metabolism of glucose, and showed a deregulated ectoine uptake at any salinity, but it was not affected in ectoine metabolism. Transposon insertion in CHR95 caused deletion of three genes, Csal0865-Csal0867: acs, encoding an acetyl-CoA synthase, mntR, encoding a transcriptional regulator of the DtxR/MntR family, and eupR, encoding a putative two-component response regulator with a LuxR_C-like DNA-binding helix-turn-helix domain. A single mntR mutant was sensitive to manganese, suggesting that mntR encodes a manganese-dependent transcriptional regulator. Deletion of eupR led to salt-sensitivity and enabled the mutant strain to use ectoines as carbon source at low salinity. Domain analysis included EupR as a member of the NarL/FixJ family of two component response regulators. Finally, the protein encoded by Csal869, located three genes downstream of eupR was suggested to be the cognate histidine kinase of EupR. This protein was predicted to be a hybrid histidine kinase with one transmembrane and one cytoplasmic sensor domain.

CONCLUSIONS

This work represents the first example of the involvement of a two-component response regulator in the osmoadaptation of a true halophilic bacterium. Our results pave the way to the elucidation of the signal transduction pathway involved in the control of ectoine transport in C. salexigens.

摘要

背景

渗透感应和相关的信号转导途径尚未在专性嗜盐菌中描述。Chromohalobacter salexigens 是一种具有广泛耐盐范围的嗜盐菌。在应对渗透压胁迫时,它会合成并积累大量的相容性溶质——章鱼胺和羟基章鱼胺。在之前的工作中,我们表明,章鱼胺也可以在从外部介质运输时积累,并且可以在最佳但不是低盐度下用作碳源。这与这些条件下不足的章鱼胺(s)运输有关。

结果

C. salexigens Tn1732 诱导的突变体(CHR95)在低和最佳盐度下用葡萄糖生长延迟,在高盐度下无法生长,并且能够在低盐度下使用章鱼胺作为碳源。CHR95 受到葡萄糖的运输和/或代谢的影响,在任何盐度下都表现出调节失控的章鱼胺摄取,但在章鱼胺代谢中不受影响。CHR95 中的转座子插入导致三个基因(Csal0865-Csal0867:acs,编码乙酰辅酶 A 合酶;mntR,编码 DtxR/MntR 家族的转录调节因子;和 eupR,编码具有 LuxR_C 样 DNA 结合螺旋-环-螺旋结构域的假定双组分反应调节蛋白)的缺失。单个 mntR 突变体对锰敏感,表明 mntR 编码一个锰依赖的转录调节因子。eupR 缺失导致盐敏感性,并使突变菌株能够在低盐度下使用章鱼胺作为碳源。结构域分析将 EupR 归入 NarL/FixJ 家族的双组分反应调节蛋白。最后,位于 eupR 下游三个基因的 Csal869 编码的蛋白被认为是 EupR 的同源组氨酸激酶。该蛋白预测为具有一个跨膜和一个细胞质传感器结构域的混合组氨酸激酶。

结论

这项工作代表了第一个涉及真嗜盐菌渗透适应的双组分反应调节蛋白的例子。我们的结果为阐明 C. salexigens 中章鱼胺运输的信号转导途径铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b8d4/2964678/732c58de0f52/1471-2180-10-256-1.jpg

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