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首页> 外文期刊>Chemical research in toxicology >Oxidative Activation of Thiacetazone by the Mycobacterium tuberculosis Flavin Monooxygenase EtaA and Human FMO1 and FMO3
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Oxidative Activation of Thiacetazone by the Mycobacterium tuberculosis Flavin Monooxygenase EtaA and Human FMO1 and FMO3

机译:结核分枝杆菌黄素单加氧酶EtaA和人类FMO1和FMO3对硫代乙酰zone的氧化激活

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摘要

Thiacetazone(TAZ)and ethionamide(ETA)are,respectively,thiourea-and thioamide-containing second line antitubercular prodrugs for which there is an extensive clinical history of cross-resistance in Mycobacterium tuberculosis.EtaA,a recently identified flavin-containing monooxygenase(FMO),is responsible for the oxidative activation of ETA in M.tuberculosis.We report here that EtaA also oxidizes TAZ and identify a sulfinic acid and a carbodiimide as the isolable metabolites.Both of these metabolites are derived from an initial sulfenic acid intermediate.Oxidation of TAZ by EtaA at basic pH favors formation of the carbodiimide,whereas neutral or acidic conditions favor formation of the sulfinic acid.The same metabolites are formed from TAZ by human FMO1 and FMO3.The sulfenic acid and carbodiimide metabolites,but not the sulfinic acid product,readily react with glutathione,the first to regenerate the parent drug and the second to give a glutathione adduct.These reactions may contribute to the antitubercular activity and/or toxicity of TAZ.
机译:硫代乙zone(TAZ)和乙硫酰胺(ETA)分别是含有硫脲和硫酰胺的二线抗结核前药,在结核分枝杆菌中有广泛的交叉耐药性临床病史。 ),是造成结核分枝杆菌中ETA氧化激活的原因。在此我们报道EtaA还可以氧化TAZ并鉴定出亚磺酸和碳二亚胺为可分离的代谢产物,这两种代谢产物均来自初始的亚硫酸中间体。在碱性pH下由EtaA生成的TAZ有利于碳二亚胺的形成,而中性或酸性条件则有利于亚磺酸的形成。人FMO1和FMO3由TAZ形成相同的代谢产物。亚硫酸和碳二亚胺的代谢产物但不亚磺酸产品,与谷胱甘肽容易反应,第一个使母体药物再生,第二个生成谷胱甘肽加合物。这些反应可能有助于TAZ的抗结核活性和/或毒性。

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