首页> 美国卫生研究院文献>Journal of Bacteriology >Chloride a New Environmental Signal Molecule Involved in Gene Regulation in a Moderately Halophilic Bacterium Halobacillus halophilus
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Chloride a New Environmental Signal Molecule Involved in Gene Regulation in a Moderately Halophilic Bacterium Halobacillus halophilus

机译:氯化物一种新的环境信号分子涉及中度嗜盐细菌嗜盐嗜盐菌的基因调控

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摘要

The gram-positive, aerobic, moderately halophilic bacterium Halobacillus halophilus is challenged in its environment by frequently changing salt (NaCl) concentrations. Recently, H. halophilus was shown to be the first prokaryote that is dependent on Cl for growth. In a search for the biological function of Cl in this prokaryote, we identified different Cl-dependent processes, which suggests a more general role for Cl in the metabolism of H. halophilus. To analyze the effect of Cl in more detail, we concentrated on one model system, the Cl-dependent production of flagella, and aimed to identify the molecular basis for the Cl dependence of flagellum production. Here, we report that synthesis of the major subunit of the flagellum, FliC, is dependent on the Cl concentration of the medium, as determined by Western blot analyses. The gene encoding FliC was cloned and sequenced, and Northern blot as well as reverse transcriptase PCR analyses revealed that expression of fliC is Cl dependent. FliC is the first protein of known function demonstrated to be synthesized in a Cl-dependent manner in a prokaryote. Two-dimensional gel electrophoresis of cells grown under different conditions revealed five more Cl-induced proteins; these were identified by N-terminal sequencing and database searches to be orthologs of proteins involved in stress response in Bacillus subtilis. The data indicate that Cl is an important environmental signal in this moderate halophile and regulates protein synthesis and gene expression. Furthermore, the data may suggest that Cl plays a role in the signal transduction involved in salt perception by this bacterium.
机译:革兰氏阳性,好氧,嗜盐嗜盐菌嗜盐嗜盐菌在其环境中受到盐浓度不断变化的挑战。最近,嗜盐杆菌被证明是第一个依赖Cl -进行生长的原核生物。在此原核生物中寻找Cl -的生物学功能时,我们确定了不同的Cl -依赖性过程,这表明Cl -的作用更为普遍/在嗜盐嗜血菌的代谢中。为了更详细地分析Cl -的作用,我们集中于一个模型系统,即依赖Cl -产生的鞭毛,并旨在确定其分子基础。 Cl -对鞭毛产生的依赖性。在这里,我们报道鞭毛的主要亚基FliC的合成取决于培养基的Cl -浓度,如Western blot分析所确定。克隆和测序了编码FliC的基因,Northern印迹和逆转录酶PCR分析表明fliC的表达是Cl -依赖性的。 FliC是第一个已知功能的蛋白,被证明可以在原核生物中以Cl -依赖的方式合成。在不同条件下生长的细胞的二维凝胶电泳显示出另外五种由Cl -诱导的蛋白。通过N末端测序和数据库搜索将它们鉴定为与枯草芽孢杆菌中的应激反应有关的蛋白质的直向同源物。数据表明,Cl -在这种中等嗜盐菌中是重要的环境信号,并调节蛋白质合成和基因表达。此外,数据可能暗示Cl -在该细菌的盐感知涉及的信号转导中起作用。

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