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RamB, a Novel Transcriptional Regulator of Genes Involved in Acetate Metabolism of Corynebacterium glutamicum

机译:RamB,一种新型的转录调控基因,涉及谷氨酸棒杆菌的乙酸代谢。

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The adaptation of Corynebacterium glutamicum to acetate as a carbon and energy source involves transcriptional regulation of the pta-ack operon coding for the acetate-activating enzymes phosphotransacetylase and acetate kinase and of the aceA and aceB genes coding for the glyoxylate cycle enzymes isocitrate lyase and malate synthase, respectively. Deletion and mutation analysis of the respective promoter regions led to the identification of highly conserved 13-bp motifs (AA/GAACTTTGCAAA) as cis-regulatory elements for expression of the pta-ack operon and the aceA and aceB genes. By use of DNA affinity chromatography, a 53-kDa protein specifically binding to the promoter/operator region of the pta-ack operon was purified. Mass spectrometry and peptide mass fingerprinting identified the protein as a putative transcriptional regulator (which was designated RamB). Purified His-tagged RamB protein was shown to bind specifically to both the pta-ack and the aceA/aceB promoter/operator regions. Directed deletion of the ramB gene in the genome of C. glutamicum resulted in mutant strain RG1. Whereas the wild type of C. glutamicum showed high-level specific activities of acetate kinase, phosphotransacetylase, isocitrate lyase, and malate synthase when grown on acetate and low-level specific activities when grown on glucose as sole carbon and energy sources, mutant RG1 showed high-level specific activities with all four enzymes irrespective of the substrate. Comparative transcriptional cat fusion experiments revealed that this deregulation takes place at the level of transcription. The results indicate that RamB is a negative transcriptional regulator of genes involved in acetate metabolism of C. glutamicum.
机译:谷氨酸棒杆菌对乙酸作为碳和能量源的适应性涉及编码编码乙酸激活酶磷酸转乙酰酶和乙酸激酶的 pta-ack 操纵子的转录调控。分别编码乙醛酸循环酶异柠檬酸裂合酶和苹果酸合酶的 aceA aceB 基因。各个启动子区域的删除和突变分析导致高度保守的13 bp的基序(AA / GAACTTTGCAAA)被鉴定为表达 pta-ack cis 调控元件。 >操纵子和 aceA aceB 基因。通过使用DNA亲和层析,纯化了与 pta-ack 操纵子的启动子/操纵子区域特异性结合的53kDa蛋白。质谱和肽质量指纹图谱鉴定该蛋白为推定的转录调节子(命名为RamB)。纯化后的带有His标签的RamB蛋白显示与 pta-ack aceA / aceB 启动子/操纵子区域特异性结合。在 C基因组中直接删除 ramB 基因。谷氨酸产生了RG1突变株。而 C的野生类型。谷氨酸在乙酸盐上生长时显示乙酸激酶,磷酸转乙酰酶,异柠檬酸裂合酶和苹果酸合酶的高水平比活性,在葡萄糖作为唯一碳和能源时生长时的低水平比活性,突变体RG1显示高水平四种酶的酶活都与底物无关。比较的转录 cat 融合实验表明,这种失调发生在转录水平。结果表明RamB是参与 C的乙酸代谢的基因的负转录调节因子。谷氨酸

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