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来自黄色短杆菌的两个σ因子基因sigA和sigB的克隆及转录特征分析

Cloning and transcriptional characterization of two sigma factor genes, sigA and sigB, from Brevibacterium flavum.

作者信息

Halgasova N, Bukovska G, Timko J, Kormanec J

机构信息

Institute of Molecular Biology, Slovak Academy of Sciences, Bratislava, Slovak Republic.

出版信息

Curr Microbiol. 2001 Oct;43(4):249-54. doi: 10.1007/s002840010296.

Abstract

Using a DNA fragment containing the principal sigma factor gene hrdB of Streptomyces aureofaciens, we identified two sigma70-like genes in a library of Brevibacterium flavum. Sequence analysis of the complete genes revealed two ORFs coding for gene products of 498 and 331 amino acid residues, which showed the greatest similarity to SigA and SigB sigma factors from Brevibacterium lactofermentum. We designated them similarly sigA and sigB. Transcription of B. flavum sigA and sigB has been investigated by S1-nuclease mapping by using RNA from different growth phases and after exposure to several stress conditions. Both genes are transcribed from a single promoter with transcription start points of 368 bp and 25 bp upstream from the proposed translation initiation codon of the sigA and sigB genes, respectively. Whereas sigA is transcribed almost constitutively during growth and after stress conditions, expression of sigB is significantly induced after several stress conditions, like acid stress, ethanol shock, and cold shock. Expression of both genes is significantly reduced after heat shock. Considering these transcriptional results, and also on the basis of the similarity to other principal sigma factor genes, sigA probably encodes the functional principal sigma factor, and sigB might have a function in stress response.

摘要

利用含有金色链霉菌主要σ因子基因hrdB的DNA片段,我们在黄色短杆菌文库中鉴定出两个类σ70基因。对完整基因的序列分析揭示了两个开放阅读框,分别编码498和331个氨基酸残基的基因产物,它们与乳酸发酵短杆菌的SigA和SigB σ因子具有最大的相似性。我们将它们分别命名为sigA和sigB。通过使用来自不同生长阶段以及暴露于几种应激条件后的RNA进行S1核酸酶作图,研究了黄色短杆菌sigA和sigB的转录情况。这两个基因均从单一启动子转录,转录起始点分别位于sigA和sigB基因推测的翻译起始密码子上游368 bp和25 bp处。虽然sigA在生长期间和应激条件后几乎持续转录,但sigB的表达在几种应激条件(如酸应激、乙醇冲击和冷冲击)后显著诱导。热休克后,这两个基因的表达均显著降低。考虑到这些转录结果,并且基于与其他主要σ因子基因的相似性,sigA可能编码功能性主要σ因子,而sigB可能在应激反应中发挥作用。

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