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除了深海细菌费氏弧菌菌株SS9中的高压外,ompH基因表达还受多种环境信号调控。

ompH gene expression is regulated by multiple environmental cues in addition to high pressure in the deep-sea bacterium Photobacterium species strain SS9.

作者信息

Bartlett D H, Welch T J

机构信息

Center for Marine Biomedicine and Biotechnology, Scripps Institution of Oceanography, University of California, San Diego, La Jolla 92093-0202.

出版信息

J Bacteriol. 1995 Feb;177(4):1008-16. doi: 10.1128/jb.177.4.1008-1016.1995.

DOI:10.1128/jb.177.4.1008-1016.1995
PMID:7860581
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC176696/
Abstract

Photobacterium species strain SS9 is a moderately barophilic (pressure-loving) deep-sea bacterial species which induces the expression of the ompH gene in response to elevated pressure. Here we demonstrate that at 1 atm (1 atm = 1.01325 x 10(5) Pa), ompH expression increases with cell density in 2216 marine medium batch culture and is subject to catabolite repression and the OmpH synthesis is inducible by energy (carbon) starvation. Regulatory mutants which are impaired in ompH gene expression at high pressure are also impaired in cell density regulation of ompH gene expression, indicating that the two inducing conditions overlap in their signal transduction pathways. The same promoter was activated by high cell density at 1 atm of pressure as well as during low-cell-density growth at 272 atm. Catabolite repression of ompH gene expression was induced by a variety of carbon sources, and this repression could be partially reversed in most cases by the addition of cyclic AMP (cAMP). Surprisingly, glucose repression of ompH transcription occurred only at 1 atm, not at 272 atm, despite the fact that catabolite repression was operational in SS9 under both conditions. It is suggested that ompH expression is cAMP and catabolite repressor protein dependent at 1 atm but becomes cAMP and perhaps catabolite repressor protein independent at 272 atm. Possible mechanisms of ompH gene activation are discussed.

摘要

发光杆菌属菌株SS9是一种中度嗜压(耐压)深海细菌,它会在压力升高时诱导ompH基因的表达。在此我们证明,在1个标准大气压(1 atm = 1.01325×10⁵ Pa)下,在2216海洋培养基分批培养中,ompH的表达随细胞密度增加,并且受到分解代谢物阻遏,ompH的合成可由能量(碳源)饥饿诱导。在高压下ompH基因表达受损的调节突变体在ompH基因表达的细胞密度调节方面也受损,这表明这两种诱导条件在其信号转导途径中存在重叠。相同的启动子在1个标准大气压下的高细胞密度以及在272个标准大气压下的低细胞密度生长过程中均被激活。ompH基因表达的分解代谢物阻遏由多种碳源诱导,并且在大多数情况下,添加环磷酸腺苷(cAMP)可部分逆转这种阻遏。令人惊讶的是,尽管在两种条件下分解代谢物阻遏在SS9中均起作用,但葡萄糖对ompH转录的阻遏仅在1个标准大气压下发生,而在272个标准大气压下则不发生。有人提出,ompH的表达在1个标准大气压下依赖于cAMP和分解代谢物阻遏蛋白,但在272个标准大气压下变得不依赖于cAMP,也许还不依赖于分解代谢物阻遏蛋白。文中讨论了ompH基因激活的可能机制。

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