首页> 外文期刊>New Zealand Journal of Zoology >Chorismate-dependent transcriptional regulation of quinate/shikimate utilization genes by LysR-type transcriptional regulator QsuR in Corynebacterium glutamicum: carbon flow control at metabolic branch point
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Chorismate-dependent transcriptional regulation of quinate/shikimate utilization genes by LysR-type transcriptional regulator QsuR in Corynebacterium glutamicum: carbon flow control at metabolic branch point

机译:谷氨酸棒杆菌中LysR型转录调节子QsuR对奎宁酸盐/志草酸盐利用基因的草酸盐依赖性转录调控:代谢分支点的碳流量控制

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摘要

The qsu operon of Corynebacterium glutamicum comprises four genes (qsuABCD) that underpin the microorganism's quinate/shikimate utilization pathways. The genes encode enzymes that catalyse reactions at the metabolic branch point between the biosynthesis route for synthesis of aromatic compounds and the catabolic route for degradation of quinate and shikimate for energy production. A qsuR gene located immediately upstream of qsuA encodes a protein (QsuR) which activates the operon in the presence of quinate or shikimate. Three observations support chorismate, an intermediate of the biosynthesis route, as a direct effector of QsuR: First, induction of qsuA mRNA in the presence of either quinate or shikimate disappears upon deletion of the gene encoding chorismate synthase. Second, chorismate accumulates when the operon is induced. Third, a DNase I-protected segment by QsuR is shortened in the presence of chorismate. The QsuR tetramer senses the accumulation of chorismate and activates qsu genes that promote the quinate/shikimate catabolic instead of the aromatic compounds biosynthetic route. Such chorismate-dependent control of carbon flow has not been previously described.
机译:谷氨酸棒杆菌的qsu操纵子包含四个基因(qsuABCD),它们是微生物的奎纳特/ shi草酸酯利用途径的基础。这些基因编码的酶催化在芳香化合物合成的生物合成途径与降解喹啉和and草酸酯以产生能量的分解代谢途径之间的代谢分支点的反应。直接位于qsuA上游的qsuR基因编码一种蛋白质(QsuR),该蛋白质在奎宁酸盐或sh草酸盐存在下激活操纵子。三种观察结果支持分支酸,即生物合成途径的中间产物,作为QsuR的直接效应子:首先,在奎尼酸或sh草酸的存在下,qsuA mRNA的诱导在缺失编码分支酸合酶的基因后消失。其次,当操纵子被诱导时,分支酸积累。第三,在分支酸存在下,由QsuR保护的DNase I保护的片段被缩短。 QsuR四聚体可检测分支酸的积累并激活qsu基因,从而促进奎宁酸/ shikimate分解代谢,而不是芳香族化合物的生物合成途径。先前没有描述这种依赖于分支酸盐的碳流量控制。

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