首页> 美国卫生研究院文献>Journal of Bacteriology >Involvement of the LuxR-Type Transcriptional Regulator RamA in Regulation of Expression of the gapA Gene Encoding Glyceraldehyde-3-Phosphate Dehydrogenase of Corynebacterium glutamicum
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Involvement of the LuxR-Type Transcriptional Regulator RamA in Regulation of Expression of the gapA Gene Encoding Glyceraldehyde-3-Phosphate Dehydrogenase of Corynebacterium glutamicum

机译:LuxR型转录调节因子RamA参与编码谷氨酸棒状杆菌甘油醛3-磷酸脱氢酶gapA基因表达的调控。

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摘要

SugR, RamA, GlxR, GntR1, and a MarR-type transcriptional regulator bind to the promoter region of the gapA gene encoding glyceraldehyde-3-phosphate dehydrogenase (GAPDH), essential for glycolysis in Corynebacterium glutamicum. We previously showed that SugR, a transcriptional repressor of phosphotransferase system genes for the sugar transport system, is involved in the downregulation of gapA expression in the absence of sugar. In this study, the role of RamA in the expression of the gapA gene was examined. Comparing the gapA expression and GAPDH activity of a ramA mutant with those of the wild type revealed that RamA is involved in upregulation of gapA expression in glucose-grown cells. DNase I footprint analyses and electrophoretic mobility shift assays revealed that RamA binds with different affinities to three sites in the gapA promoter. lacZ reporter assays with mutated RamA binding sites in the gapA promoter showed that the middle binding site is the most important for RamA to activate gapA expression and that binding of RamA to the gapA promoter activates the gene expression not only in glucose-grown cells but also in acetate-grown cells. Furthermore, RamA also directly activates sugR expression, indicating that two global regulators, RamA and SugR, are coordinately involved in the complex regulation of gapA expression in C. glutamicum.
机译:SugR,RamA,GlxR,GntR1和MarR型转录调节子与编码甘油3磷酸脱氢酶(GAPDH)的gapA基因的启动子区域结合,这对于谷氨酸棒杆菌的糖酵解至关重要。我们以前表明SugR,糖转移系统的磷酸转移酶系统基因的转录阻遏物,在糖不存在的情况下参与了gapA表达的下调。在这项研究中,检查了RamA在gapA基因表达中的作用。比较ramA突变体与野生型的gapA表达和GAPDH活性,发现RamA参与了葡萄糖生长细胞中gapA表达的上调。 DNase I足迹分析和电泳迁移率迁移分析表明,RamA以不同的亲和力与gapA启动子中的三个位点结合。 lacZ报道基因分析在gapA启动子中突变的RamA结合位点表明,中间结合位点对于RamA激活gapA表达最重要,而RamA与gapA启动子的结合不仅激活了葡萄糖生长的细胞,还激活了基因表达在醋酸盐生长的细胞中。此外,RamA还直接激活sugR表达,表明两个全局调节因子RamA和SugR协同参与了谷氨酸棒状杆菌gapA表达的复杂调控。

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