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首页> 外文期刊>Molecular Microbiology >Identification of a regulatory protein required for pressure-responsive gene expression in the deep-sea bacterium Photobacterium species strain SS9.
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Identification of a regulatory protein required for pressure-responsive gene expression in the deep-sea bacterium Photobacterium species strain SS9.

机译:鉴定深海细菌光致细菌种菌株SS9中压力响应基因表达所需的调节蛋白。

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摘要

Here, we report the characterization of a gene necessary for hydrostatic pressure regulation of gene expression in the deep-sea bacterium Photobacterium species strain SS9. The deduced amino acid sequence of the gene product shares extensive similarity to ToxR, a transmembrane DNA-binding protein first discovered as a virulence determinant in the pathogenic bacterium Vibrio cholerae. Changes in hydrostatic pressure induce changes in both the abundance and the activity of the SS9 ToxR protein (or the activity of a ToxR-regulated protein). As with other high-pressure-inducible phenomena observed in higher organisms, anaesthetics antagonize high-pressure signalling mediated by ToxR. It is suggested that SS9 ToxR has evolved the ability to respond to pressure-mediated alterations in membrane structure. V. cholerae and SS9 also share similarity in a ToxR-regulated protein, indicating that part of the ToxR regulon is conserved in diverse members of the family Vibrionaceae. The SS9 ToxR system represents a useful model for studies of signal transduction and environmental adaptation in the largest portion of the biosphere, the deep sea.
机译:在这里,我们报告的深海细菌光细菌物种菌株SS9基因表达的水压调节所需的基因的表征。该基因产物的推导氨基酸序列与ToxR具有广泛的相似性,ToxR是一种跨膜DNA结合蛋白,最初被发现为致病性霍乱弧菌的致病力决定因素。静水压力的变化会引起SS9 ToxR蛋白的丰度和活性(或ToxR调节蛋白的活性)的变化。与在高等生物中观察到的其他高压诱导现象一样,麻醉剂拮抗由ToxR介导的高压信号传导。提示SS9 ToxR已经发展了对压力介导的膜结构变化作出反应的能力。霍乱弧菌和SS9在ToxR调节的蛋白质中也具有相似性,这表明ToxR调节子的一部分在弧菌科的不同成员中是保守的。 SS9 ToxR系统代表了一个有用的模型,可用于研究生物圈最大部分深海中的信号传导和环境适应。

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