首页> 外文期刊>Molecular Microbiology >Bright luminescence of Vibrio fischeri aconitase mutants reveals a connection between citrate and the Gac/Csr regulatory system
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Bright luminescence of Vibrio fischeri aconitase mutants reveals a connection between citrate and the Gac/Csr regulatory system

机译:费氏弧菌乌头酸弧菌突变体的明亮发光揭示了柠檬酸盐与Gac / Csr调节系统之间的联系

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摘要

The Gac/Csr regulatory system is conserved throughout the -proteobacteria and controls key pathways in central carbon metabolism, quorum sensing, biofilm formation and virulence in important plant and animal pathogens. Here we show that elevated intracellular citrate levels in a Vibrio fischeri aconitase mutant correlate with activation of the Gac/Csr cascade and induction of bright luminescence. Spontaneous or directed mutations in the gene that encodes citrate synthase reversed the bright luminescence of aconitase mutants, eliminated their citrate accumulation and reversed their elevated expression of CsrB. Our data elucidate a correlative link between central metabolic and regulatory pathways, and they suggest that the Gac system senses a blockage at the aconitase step of the tricarboxylic acid cycle, either through elevated citrate levels or a secondary metabolic effect of citrate accumulation, and responds by modulating carbon flow and various functions associated with host colonization, including bioluminescence.
机译:Gac / Csr调节系统在整个变形杆菌中均得到保护,并控制重要植物和动物病原体中中央碳代谢,群体感应,生物膜形成和毒力的关键途径。在这里,我们显示在费氏弧菌乌头酸弧菌突变体中升高的细胞内柠檬酸盐水平与Gac / Csr级联的激活和明亮发光的诱导相关。编码柠檬酸合酶的基因中的自发或定向突变逆转了乌头酸突变体的明亮发光,消除了其柠檬酸积累,并逆转了其CsrB的高表达。我们的数据阐明了中央代谢途径与调节途径之间的相关联系,他们表明,Gac系统通过升高的柠檬酸盐水平或柠檬酸盐积累的次级代谢作用,在三羧酸循环的乌头酸步骤感觉到了阻断作用,并通过调节碳流量以及与宿主定植有关的各种功能,包括生物发光。

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