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通过调节细胞内支链氨基酸池来调节 CodY 活性。

Regulation of CodY activity through modulation of intracellular branched-chain amino acid pools.

机构信息

Department of Molecular Biology and Microbiology, Tufts University School of Medicine, Boston, Massachusetts 02111, USA.

出版信息

J Bacteriol. 2010 Dec;192(24):6357-68. doi: 10.1128/JB.00937-10. Epub 2010 Oct 8.

Abstract

In several Gram-positive bacterial species, the global transcriptional regulatory protein CodY adjusts the expression of many metabolic genes, apparently in response to changes in the pools of specific metabolites, i.e., the branched-chain amino acids (BCAAs) isoleucine, leucine, and valine (ILV) and the nucleoside triphosphate GTP. CodY not only responds to these metabolites as measured in vitro but also regulates the genes that direct their synthesis. We have constructed a set of strains lacking binding sites for the CodY protein in cis at loci coding for the ILV biosynthetic machinery, effectively overexpressing these genes in an attempt to modulate the ILV input signal to CodY. Metabolite analyses of strains derepressed for genes needed for ILV synthesis revealed more than a 6-fold increase in the valine pool and a 2-fold increase in the isoleucine and leucine pools. Accumulation of the branched-chain amino acids was accompanied by a 24-fold induction of the bkd operon (required for branched-chain fatty acid synthesis) and 6-fold hyperrepression of the CodY-regulated yhdG and yufN genes, demonstrating that CodY perceives intracellular fluctuations in at least one if its input signals. We conclude that changes in the rate of endogenous ILV synthesis serve as an important signal for CodY-mediated gene regulation.

摘要

在几种革兰氏阳性细菌中,全局转录调控蛋白 CodY 会调节许多代谢基因的表达,显然是对特定代谢物池(即支链氨基酸(BCAA)异亮氨酸、亮氨酸和缬氨酸(ILV)和核苷三磷酸 GTP)的变化做出反应。CodY 不仅对这些代谢物做出体外测量的反应,还调节指导其合成的基因。我们构建了一组在编码 ILV 生物合成机制的基因座处缺乏 CodY 蛋白顺式结合位点的菌株,有效地过表达这些基因,试图调节 CodY 的 ILV 输入信号。对基因缺失菌株进行代谢物分析,发现 ILV 合成所需基因的表达被去阻遏,缬氨酸池增加了 6 倍以上,异亮氨酸和亮氨酸池增加了 2 倍。支链氨基酸的积累伴随着 bkd 操纵子(支链脂肪酸合成所需)的 24 倍诱导和 CodY 调节的 yhdG 和 yufN 基因的 6 倍超阻遏,表明 CodY 至少能感知其输入信号之一的细胞内波动。我们得出结论,内源性 ILV 合成率的变化是 CodY 介导的基因调控的重要信号。

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