Chi E, Bartlett D H
Marine Biology Research Division, (0202), Scripps Institution of Oceanography, University of California at San Diego, La Jolla 92093-0202, USA.
Mol Microbiol. 1995 Aug;17(4):713-26. doi: 10.1111/j.1365-2958.1995.mmi_17040713.x.
Many deep-sea bacteria have evolved specialized adaptations for life at cold temperatures and high pressures. A locus required for both psychro- and baro-adaptation in the psychrophilic, moderate barophile, Photobacterium species strain SS9 was identified among SS9 transposon mutants. DNA sequence analysis of this locus identified four complete open reading frames (ORFs), which appear to comprise an operon, and a fifth incomplete ORF. All transposon insertions isolated are in ORF3. Extensive sequence similarity exists between the translation products of ORFs 1-3 and a collection of gene products proposed to include alternative RNA polymerase sigma factors and modifiers of sigma-factor activity involved in extracytoplasmic sensing and regulation. Based on the similarity between ORF1 and Escherichia coli rpoE, we have tentatively designated this locus the rpoE locus. SS9 rpoE locus ORF3 insertion mutants showed altered abundances of numerous outer membrane proteins and were both baro- and psychro-sensitive. ORF3 mutant revertants that displayed enhanced high-pressure growth also displayed concomitant enhanced low-temperature growth. Most of these revertants possessed DNA rearrangements at the site of the transposon insertion, further demonstrating the importance of the rpoE locus to high-pressure and cold-temperature growth. Complementation analyses indicated that ORF3 functions in OMP synthesis regulation while ORF4 is required for baro- and psychro-adaptation.
许多深海细菌已经进化出了适应低温和高压环境的特殊机制。在嗜冷、中等嗜压的发光杆菌属物种菌株SS9的转座子突变体中,鉴定出了一个对低温和高压适应都必需的基因座。对该基因座的DNA序列分析确定了四个完整的开放阅读框(ORF),它们似乎构成一个操纵子,还有一个不完整的ORF5。所有分离得到的转座子插入都在ORF3中。ORF1 - 3的翻译产物与一组基因产物之间存在广泛的序列相似性,这些基因产物被认为包括替代RNA聚合酶σ因子以及参与胞外传感和调控的σ因子活性调节剂。基于ORF1与大肠杆菌rpoE之间的相似性,我们初步将这个基因座命名为rpoE基因座。SS9 rpoE基因座ORF3插入突变体显示出许多外膜蛋白丰度的改变,并且对压力和低温敏感。表现出高压生长增强的ORF3突变回复体也同时表现出低温生长增强。这些回复体中的大多数在转座子插入位点发生了DNA重排,进一步证明了rpoE基因座对高压和低温生长的重要性。互补分析表明,ORF3在OMP合成调控中起作用,而ORF4是压力和低温适应所必需的。