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首页> 外文期刊>Molecular Microbiology >The critical role of S-lactoylglutathione formation during methylglyoxal detoxification in Escherichia coli.
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The critical role of S-lactoylglutathione formation during methylglyoxal detoxification in Escherichia coli.

机译:在大肠杆菌中甲基乙二醛解毒过程中S-乳糖基谷胱甘肽形成的关键作用。

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Survival of exposure to methylglyoxal (MG) in Gram-negative pathogens is largely dependent upon the operation of the glutathione-dependent glyoxalase system, consisting of two enzymes, GlxI (gloA) and GlxII (gloB). In addition, the activation of the KefGB potassium efflux system is maintained closed by glutathione (GSH) and is activated by S-lactoylGSH (SLG), the intermediate formed by GlxI and destroyed by GlxII. Escherichia coli mutants lacking GlxI are known to be extremely sensitive to MG. In this study we demonstrate that a DeltagloB mutant is as tolerant of MG as the parent, despite having the same degree of inhibition of MG detoxification as a DeltagloA strain. Increased expression of GlxII from a multicopy plasmid sensitizes E. coli to MG. Measurement of SLG pools, KefGB activity and cytoplasmic pH shows these parameters to be linked and to be very sensitive to changes in the activity of GlxI and GlxII. The SLG pool determines the activity of KefGB and the degree of acidification of the cytoplasm, which is a major determinant of the sensitivity to electrophiles. The data are discussed in terms of how cell fate is determined by the relative abundance of the enzymes and KefGB.
机译:在革兰氏阴性病原体中暴露于甲基乙二醛(MG)的存活在很大程度上取决于谷胱甘肽依赖性乙二醛酶系统的运行,该系统由两种酶GlxI(gloA)和GlxII(gloB)组成。此外,KefGB钾外排系统的激活被谷胱甘肽(GSH)保持关闭,并被S-乳糖基GSH(SLG)激活,后者是由GlxI形成并被GlxII破坏的中间体。缺乏GlxI的大肠杆菌突变体对MG非常敏感。在这项研究中,我们证明了DeltagloB突变体对MG的耐受性与亲代一样,尽管对MG解毒的抑制程度与DeltagloA菌株相同。来自多拷贝质粒的GlxII表达的增加使大肠杆菌对MG敏感。 SLG池,KefGB活性和细胞质pH值的测量显示这些参数是相关的,并且对GlxI和GlxII活性的变化非常敏感。 SLG池确定KefGB的活性和细胞质的酸化程度,这是对亲电试剂敏感性的主要决定因素。讨论了如何通过酶和KefGB的相对丰度确定细胞命运的数据。

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