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编码嗜冷菌海科氏菌热休克σ因子σ32的rpoH基因。

The rpoH gene encoding heat shock sigma factor sigma32 of psychrophilic bacterium Colwellia maris.

作者信息

Yamauchi Seiji, Okuyama Hidetoshi, Nishiyama Yoshitaka, Hayashi Hidenori

机构信息

Graduate School of Science and Engineering, Ehime University, Matsuyama, Japan.

出版信息

Extremophiles. 2006 Apr;10(2):149-58. doi: 10.1007/s00792-005-0485-9. Epub 2005 Dec 17.

Abstract

The rpoH gene encoding a heat shock sigma factor, sigma(32), was cloned from the psychrophilic bacterium Colwellia maris. The deduced amino acid sequence of sigma(32) from C. maris is more than 60% homologous to that of sigma(32) from mesophilic bacteria. The RpoH box, a 9-amino-acid sequence region (QRKLFFNLR) specific to sigma(32), and two downstream box sequences complementary to a part of 16S rRNA were identified. Primer extension analysis showed that the C. maris rpoH is expressed from only one sigma(70)-type promoter. Northern blot analysis showed that the level of rpoH mRNA was clearly increased at 20 degrees C, a temperature that induces heat shock in this organism. In the presence of an inhibitor of transcriptional initiation, the degradation of rpoH mRNA was much slower at 20 degrees C than at 10 degrees C. Thus, increased stability of the rpoH mRNA might be responsible for the rpoH mRNA accumulation. The predicted secondary structure of the 5'-region of C. maris rpoH mRNA was different from the conserved patterns reported for most mesophilic bacteria, and the base pairing of the downstream boxes appeared to be less stable than that of Escherichia coli rpoH mRNA. Thus, essential features that ensure the HSP expression at a relatively low temperature are embedded in the rpoH gene of psychrophiles.

摘要

编码热休克σ因子σ32的rpoH基因是从嗜冷细菌海氏考氏菌中克隆得到的。海氏考氏菌σ32的推导氨基酸序列与嗜温细菌的σ32的氨基酸序列同源性超过60%。鉴定出了RpoH框,即σ32特有的一个9个氨基酸序列区域(QRKLFFNLR),以及两个与16S rRNA一部分互补的下游框序列。引物延伸分析表明,海氏考氏菌rpoH仅从一个σ70型启动子表达。Northern印迹分析表明,在20℃时rpoH mRNA水平明显升高,20℃是诱导该生物体热休克的温度。在转录起始抑制剂存在的情况下,20℃时rpoH mRNA的降解比10℃时慢得多。因此,rpoH mRNA稳定性的增加可能是rpoH mRNA积累的原因。海氏考氏菌rpoH mRNA 5'区域的预测二级结构与大多数嗜温细菌报道的保守模式不同,下游框的碱基配对似乎比大肠杆菌rpoH mRNA的碱基配对更不稳定。因此,嗜冷菌的rpoH基因中蕴含着在相对低温下确保热休克蛋白表达的关键特征。

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