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Regulation of the bacillus subtilis ccpC gene by ccpA and ccpC.

机译:ccpA和ccpC对枯草芽孢杆菌ccpC基因的调控。

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Bacillus subtilis CcpC, a LysR-type transcriptional regulator, represses the transcription of genes for citrate synthase (citZ) and aconitase (citB) in response to citrate availability. Transcription of ccpC was shown to initiate at two promoters, P1, located just upstream of the ccpC gene, and P2, located within or upstream of the neighbouring ykuL gene. Expression from the ccpC-specific promoter (P1) was negatively regulated by CcpC but independent of the carbon source in the medium. Gel shift and DNase I footprinting experiments revealed that CcpC binds to an interrupted dyad sequence that surrounds the ccpC transcriptional start point. Transcription of ccpC from the upstream promoter (P2) was repressed by glucose in a CcpA-dependent manner. A putative CcpA binding site (cre) was identified upstream of the -35 region of the P1 promoter. Transcriptional fusion studies demonstrated that glucose repression of ccpC expression from the P2 promoter depends on this cre site. In addition, DNase I footprinting experiments showed that CcpA specifically binds to this cre site and that the introduction of mutations (cre*) into this site abolished the binding. These results suggest that CcpA may control CcpC synthesis by acting as a road-block to readthrough transcription from the P2 promoter.
机译:枯草芽孢杆菌CcpC,一种LysR型转录调节因子,可响应柠檬酸盐的可用性抑制柠檬酸合酶(citZ)和乌头酸酶(citB)的基因转录。已显示ccpC的转录起始于两个启动子,即位于ccpC基因上游的P1和位于邻近ykuL基因内或上游的P2。来自ccpC特异性启动子(P1)的表达受CcpC负调控,但与培养基中的碳源无关。凝胶位移和DNase I足迹实验表明,CcpC与围绕ccpC转录起点的间断二元序列结合。葡萄糖以CcpA依赖性方式抑制了上游启动子(P2)的ccpC转录。在P1启动子的-35区上游发现了一个推测的CcpA结合位点(cre)。转录融合研究表明,P2启动子对ccpC表达的葡萄糖阻遏作用取决于该cre位点。另外,DNase I足迹实验表明CcpA特异性结合该cre位点,而突变(cre *)引入该位点则取消了该结合。这些结果表明,CcpA可以通过充当通读P2启动子转录的障碍来控制CcpC的合成。

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