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A dual control mechanism synchronizes riboflavin and sulphur metabolism in Bacillus subtilis

机译:双重控制机制同步枯草芽孢杆菌中的核黄素和硫代谢

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摘要

Flavin mononucleotide (FMN) riboswitches are genetic elements, which in many bacteria control genes responsible for biosynthesis and/or transport of riboflavin (rib genes). Cytoplasmic riboflavin is rapidly and almost completely converted to FMN by flavokinases. When cytoplasmic levels of FMN are sufficient (“high levels”), FMN binding to FMN riboswitches leads to a reduction of rib gene expression. We report here that the protein RibR counteracts the FMN-induced “turn-off” activities of both FMN riboswitches in Bacillus subtilis, allowing rib gene expression even in the presence of high levels of FMN. The reason for this secondary metabolic control by RibR is to couple sulfur metabolism with riboflavin metabolism.
机译:黄素单核苷酸(FMN)核糖开关是遗传元件,在许多细菌中,它们控制着负责核黄素生物合成和/或转运的基因(肋骨基因)。细胞质核黄素可通过黄素激酶迅速,几乎完全转化为FMN。当FMN的细胞质水平足够时(“高水平”),FMN与FMN核糖开关的结合会导致rib基因表达的减少。我们在这里报告蛋白质RibR抵消枯草芽孢杆菌中FMN诱导的两个FMN核糖开关的“关闭”活性,即使存在高水平的FMN时也允许肋骨基因表达。 RibR进行次级代谢控制的原因是将硫代谢与核黄素代谢耦合。

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