长盐单胞菌NhaD型钠/质子反转运体:海洋生境盐胁迫响应机制?

Matthias Kurz, Anika N S Brünig, Erwin A Galinski
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引用次数: 33

摘要

背景:钠/质子反转运蛋白(Nha)在pH-和Na+稳态中起重要作用。微生物对Na+和Li+具有不同的容量、亲和力和选择性。大肠杆菌的内稳态系统,NhaA和NhaB,已经得到了很好的研究,但其他类型的Na+/H+-反转运蛋白如NhaD的功能尚未完全了解。由于一些反转运蛋白在高等生物生理的各个方面发挥着重要作用,人们可以推测,一些原核反转运蛋白的主要功能不同于pH-和Na+稳态。结果:研究了在嗜盐真细菌长盐单胞菌中发现的一个编码NhaD型反转运蛋白的基因的功能和调控。该基因的一级氨基酸序列与已知的解淀粉碱单胞菌、希瓦氏菌和其他几种海洋生物的NhaD型反转运蛋白的同源性超过60%。发现了双调控长叶莲NhaD表达的证据。克隆并在大肠杆菌中表达了该基因。对反转运蛋白缺乏的NaCl和LiCl敏感的大肠杆菌突变体EP432和KNabc被一个携带长形芽孢杆菌nhaD基因的质粒部分补充。令人惊讶的是,当NhaD共表达时,具有完整稳态系统的大肠杆菌DH5alpha菌株的LiCl敏感性增加。结论:由于NhaD是迄今为止仅在嗜盐或嗜盐变形菌中发现的一种反向转运蛋白,因此可以推测这种类型的反向转运蛋白提供了一种特殊的适应海洋生境的机制。正如已经推测的那样——尽管没有支持数据——并在这项研究中得到证实,这可能是渗透调节目的的活性Na+输入。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
NhaD type sodium/proton-antiporter of Halomonas elongata: a salt stress response mechanism in marine habitats?

Background: Sodium/proton-antiporters (Nha) are known to play an important role in pH- and Na+-homeostasis. In microorganisms several types with different capacity, affinity and selectivity for Na+ and Li+ exist. The homeostasis system of E. coli, NhaA and NhaB, is well researched, but the function of other types of Na+/H+-antiporters like NhaD is yet to be fully understood. Since several antiporters play an important role at various points in the physiology of higher organisms, one can speculate that the main functions of some of those procaryotic antiporters differ from pH- and Na+-homeostasis.

Results: This study investigates the function and regulation of a gene encoding for a NhaD type antiporter which was discovered in the halophilic eubacterium Halomonas elongata. The deduced primary amino acid sequence of the abovementioned gene showed more than 60% identity to known antiporters of the NhaD type from Alkalimonas amylolytica, Shewanella oneidensis and several other marine organisms of the gamma-Proteobacteria. Evidence was found for a dual regulation of H. elongata NhaD expression. The gene was cloned and expressed in E. coli. Antiporter deficient NaCl and LiCl sensitive E. coli mutants EP432 and KNabc were partially complemented by a plasmid carrying the H. elongata nhaD gene. Surprisingly the LiCl sensitivity of E. coli strain DH5alpha having a complete homeostasis system was increased when NhaD was co-expressed.

Conclusion: Since NhaD is an antiporter known so far only from halophilic or haloalcaliphilic Proteobacteria one can speculate that this type of antiporter provides a special mechanism for adaptation to marine habitats. As was already speculated--though without supporting data--and substantiated in this study this might be active Na+-import for osmoregulatory purposes.

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