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Studies on the Glutathione-Dependent Formaldehyde-Activating Enzyme from Paracoccus denitrificans

机译:反硝化副球菌谷胱甘肽依赖性甲醛激活酶的研究

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摘要

Formaldehyde is a toxin and carcinogen that is both an environmental pollutant and an endogenous metabolite. Formaldehyde metabolism, which is probably essential for all aerobic cells, likely proceeds via multiple mechanisms, including via a glutathione-dependent pathway that is widely conserved in bacteria, plants and animals. However, it is unclear whether the first step in the glutathione-dependent pathway (i.e. formation of S-hydroxymethylglutathione (HMG)) is enzyme-catalysed. We report studies on glutathione-dependent formaldehyde-activating enzyme (GFA) from Paracoccus denitrificans, which has been proposed to catalyse HMG formation from glutathione and formaldehyde on the basis of studies using NMR exchange spectroscopy (EXSY). Although we were able to replicate the EXSY results, time course experiments unexpectedly imply that GFA does not catalyse HMG formation under standard conditions. However, GFA was observed to bind glutathione using NMR and mass spectrometry. Overall, the results reveal that GFA binds glutathione but does not directly catalyse HMG formation under standard conditions. Thus, it is possible that GFA acts as a glutathione carrier that acts to co-localise glutathione and formaldehyde in a cellular context.
机译:甲醛是一种毒素和致癌物,既是环境污染物,又是内源性代谢产物。甲醛代谢可能是所有需氧细胞必不可少的,它可能通过多种机制进行,包括通过在细菌,植物和动物中广泛保守的谷胱甘肽依赖性途径。但是,尚不清楚谷胱甘肽依赖性途径的第一步(即S-羟甲基谷胱甘肽(HMG)的形成)是否是酶催化的。我们报道了对反硝化副球菌的谷胱甘肽依赖性甲醛激活酶(GFA)的研究,该研究已被提议在使用NMR交换光谱法(EXSY)的基础上催化由谷胱甘肽和甲醛形成HMG。尽管我们能够复制EXSY结果,但是时程实验出乎意料地暗示GFA在标准条件下不会催化HMG的形成。然而,使用NMR和质谱法观察到GFA结合谷胱甘肽。总体而言,结果表明GFA结合了谷胱甘肽,但在标准条件下不直接催化HMG的形成。因此,GFA有可能充当谷胱甘肽载体,其在细胞环境中起共定位谷胱甘肽和甲醛的作用。

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