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大肠杆菌磷酸烯醇式丙酮酸糖磷酸转移酶系统操纵子表达的正调控。调控区域的鉴定。

Positive regulation of the expression of the Escherichia coli pts operon. Identification of the regulatory regions.

作者信息

De Reuse H, Kolb A, Danchin A

机构信息

Unité de Régulation de l'Expression Génétique, Institut Pasteur, Paris, France.

出版信息

J Mol Biol. 1992 Aug 5;226(3):623-35. doi: 10.1016/0022-2836(92)90620-y.

Abstract

The pts operon of Escherichia coli is composed of the ptsH, ptsI and crr genes coding for three proteins central to the phosphoenolpyruvate dependent phosphotransferase system (PTS), the HPr, enzyme I and EIIIGlc proteins, respectively. We previously showed that transcription from the promoter region located upstream from the pts operon is regulated by two control circuits, which can occur independently from each other. Transcription of the pts operon is (1) stimulated by the CAP-cAMP complex and (2) enhanced during growth on glucose, a PTS substrate. The DNA regions involved in regulation of the expression of the pts operon have been identified. Two promoters, P0 and P1, separated by 100 bp are located upstream from the pts operon. In these promoter regions, we identified two sequences showing similarity with the consensus of CAP-binding sites, CAPa located near P0 and CAPb located in the -35 region of P1. In vivo experiments showed that binding of CAP-cAMP at the CAPa site stimulates transcription from the P0 promoter. The binding sites of CAP-cAMP and/or RNA-polymerase on a DNA fragment containing both P0 and P1 promoters as well as both CAPa and CAPb sites were examined by the technique of DNase I footprinting. These in vitro experiments suggested that CAP-cAMP binding at the CAPb site might also play a role in regulation of the pts operon expression. In addition, we showed that the DNA region carrying the CAPa site is important for regulation by glucose. We finally propose that the expression of the pts operon is controlled by two alternative positive regulatory mechanisms, which are designed to allow activation of the pts operon under a great variety of growth conditions.

摘要

大肠杆菌的pts操纵子由ptsH、ptsI和crr基因组成,它们分别编码磷酸烯醇丙酮酸依赖性磷酸转移酶系统(PTS)的三种核心蛋白,即HPr、酶I和EIIIGlc蛋白。我们之前表明,位于pts操纵子上游启动子区域的转录受两个控制回路调节,这两个回路可相互独立发生。pts操纵子的转录:(1)受CAP-cAMP复合物刺激;(2)在以PTS底物葡萄糖为碳源生长期间增强。已确定参与pts操纵子表达调控的DNA区域。两个相距100 bp的启动子P0和P1位于pts操纵子上游。在这些启动子区域,我们鉴定出两个与CAP结合位点共有序列相似的序列,靠近P0的CAPa和位于P1的-35区域的CAPb。体内实验表明,CAP-cAMP在CAPa位点的结合刺激P0启动子的转录。通过DNase I足迹法检测了CAP-cAMP和/或RNA聚合酶在包含P0和P1启动子以及CAPa和CAPb位点的DNA片段上的结合位点。这些体外实验表明,CAP-cAMP在CAPb位点的结合可能也在pts操纵子表达调控中起作用。此外,我们表明携带CAPa位点的DNA区域对葡萄糖调控很重要。我们最终提出,pts操纵子的表达受两种交替的正调控机制控制,这两种机制旨在使pts操纵子在多种生长条件下被激活。

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