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ibpB热休克基因的转录受σ(32)和σ(54)启动子的控制,这是热休克反应的第三个调控子。

Transcription of the ibpB heat-shock gene is under control of sigma(32)- and sigma(54)-promoters, a third regulon of heat-shock response.

作者信息

Kuczyńska-Wisńik D, Laskowska E, Taylor A

机构信息

Department of Biochemistry, University of Gdańsk, Kladki 24, Gdańsk, 80 822, Poland.

出版信息

Biochem Biophys Res Commun. 2001 Jun 1;284(1):57-64. doi: 10.1006/bbrc.2001.4926.

Abstract

The expression of the ibpAibpB heat-shock operon of Escherichia coli was found previously not to conform to the known pattern of expression of the sigma(32)-regulated operons because the rpoH gene mutation inactivating the sigma(32) protein did not abolish the ibp induction. We show here that this effect can depend partly on the sigma(54)-promoter that is inducible by heat shock, located upstream of the ibpB, the distal gene of the operon. It may also depend on a metabolic signal, postulated by others, and possibly required for the expression of the ibpAB genes. Thus, the ibpB gene can be translated from the transcript covering the whole operon starting from the sigma(32)-promoter and from the ibpB gene transcript starting from the sigma(54)-promoter. These results indicate that the ibpB gene is a second member of the sigma(54)-heat-shock regulon in E. coli besides pspA-E operon. Thus, heat-shock response involves three regulons controlled by sigma(32), sigma(24), and sigma(54) RNA polymerase subunits.

摘要

先前发现,大肠杆菌ibpAibpB热休克操纵子的表达不符合已知的由σ(32)调控的操纵子的表达模式,因为使σ(32)蛋白失活的rpoH基因突变并未消除ibp的诱导作用。我们在此表明,这种效应可能部分取决于位于操纵子远端基因ibpB上游、受热休克诱导的σ(54)启动子。它也可能取决于其他研究推测的一种代谢信号,这可能是ibpAB基因表达所必需的。因此,ibpB基因既可以从覆盖整个操纵子、起始于σ(32)启动子的转录本翻译而来,也可以从起始于σ(54)启动子的ibpB基因转录本翻译而来。这些结果表明,除了pspA - E操纵子外,ibpB基因是大肠杆菌中σ(54)热休克调节子的第二个成员。因此,热休克反应涉及由σ(32)、σ(24)和σ(54) RNA聚合酶亚基控制的三个调节子。

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