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通过上游结合的环腺苷酸受体蛋白对大肠杆菌guaB启动子的下调作用。

Downregulation of the Escherichia coli guaB promoter by upstream-bound cyclic AMP receptor protein.

作者信息

Husnain Seyyed I, Busby Stephen J W, Thomas Mark S

机构信息

School of Medicine and Biomedical Sciences, University of Sheffield, Sheffield, United Kingdom.

出版信息

J Bacteriol. 2009 Oct;191(19):6094-104. doi: 10.1128/JB.00672-09. Epub 2009 Jul 24.

Abstract

The Escherichia coli guaB promoter (P(guaB)) is responsible for directing transcription of the guaB and guaA genes, which specify the biosynthesis of the nucleotide GMP. P(guaB) is subject to growth rate-dependent control (GRDC) and possesses an UP element that is required for this regulation. In addition, P(guaB) contains a discriminator, three binding sites for the nucleoid-associated protein FIS, and putative binding sites for the regulatory proteins DnaA, PurR, and cyclic AMP receptor protein (CRP). Here we show that the CRP-cyclic AMP (cAMP) complex binds to a site located over 100 bp upstream of the guaB transcription start site, where it serves to downregulate P(guaB). The CRP-mediated repression of P(guaB) activity increases in media that support lower growth rates. Inactivation of the crp or cyaA gene or ablation/translocation of the CRP site relieves repression by CRP and results in a loss of GRDC of P(guaB). Thus, GRDC of P(guaB) involves a progressive increase in CRP-mediated repression of the promoter as the growth rate decreases. Our results also suggest that the CRP-cAMP complex does not direct GRDC at P(guaB) and that at least one other regulatory factor is required for conferring GRDC on this promoter. However, PurR and DnaA are not required for this regulatory mechanism.

摘要

大肠杆菌guaB启动子(P(guaB))负责指导guaB和guaA基因的转录,这两个基因参与核苷酸GMP的生物合成。P(guaB)受到生长速率依赖性调控(GRDC),并拥有一个该调控所需的上游元件(UP元件)。此外,P(guaB)包含一个鉴别子、三个与类核相关蛋白FIS的结合位点以及调控蛋白DnaA、PurR和环腺苷酸受体蛋白(CRP)的假定结合位点。在此我们表明,CRP - 环腺苷酸(cAMP)复合物结合到guaB转录起始位点上游超过100 bp处的一个位点,在那里它起到下调P(guaB)的作用。在支持较低生长速率的培养基中,CRP介导的对P(guaB)活性的抑制作用增强。crp或cyaA基因的失活,或者CRP位点的缺失/移位可解除CRP的抑制作用,并导致P(guaB)的GRDC丧失。因此,P(guaB)的GRDC涉及随着生长速率降低,CRP介导的对启动子的抑制作用逐渐增强。我们的结果还表明,CRP - cAMP复合物并非直接介导P(guaB)的GRDC,并且至少需要另一种调控因子来赋予该启动子GRDC。然而,这种调控机制不需要PurR和DnaA。

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