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Glutathione S-Transferase Conjugation of Organophosphorus Pesticides Yields S-Phospho-,S-Aryl-,and S-Alkylglutathione Derivatives

机译:谷胱甘肽S-转移酶缀合有机磷农药可产生S-磷酸,S-芳基和S-烷基谷胱甘肽衍生物

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Pesticide detoxification is a central feature of selective toxicity and safety evaluation.Two of the principal enzymes involved are GSH S-transferases(GSTs)and cytochrome P450s acting alone and together.More than 100 pesticides are organophosphorus(OP)compounds,but with few exceptions,their GSH conjugates have not been directly observed in vitro or in vivo.The major insecticides chlorpyrifos(CP)and diazinon are of particular interest as multifunctional substrates with diverse metabolites,while ClP(S)(OEt)2 and the cotton defoliant tribufos are possible precursors of phosphorylated GSH conjugates.Formation of GSH conjugates by GST with GSH was studied in vitro with and without metabolic activation by human fiver microsomes or P450 3A4 with NADPH.Metabolites were analyzed by liquid chromatography-electrospray ionization-mass spectrometry(LC-ESI-MS).Five GSH conjugates were identified from CP and chlorpyrifos oxon(CPO),i.e.,GSCP and GSCPO in which the 6-chloro substituent of CP and CPO,respectively,is displaced by GSH;S-(3,5,6-trichloropyridm-2-yl)glutathione;5-(3,5-dichloro-6-hydroxypyridin-2-yl)glutathione;and S-ethylglutathione.GST of a human liver microsomal preparation but not P450 3A4 with GSH metabolized CP to GSCP.With GST and GSH,diazinon and diazoxon gave S-(2-isopropyl-4-methylpyrimidin-6-yl)glutathione and ClP(S)(OEt)2 yielded GSP-(S)(OEt)2.With microsomes,NADPH,GST,and GSH tribufos gave GSP(O)(SBu)2.The liver of intraperitoneally treated mice contained GSCP from CP,GSP(S)(OEt)2 from ClP(S)(OEt)2,and GSP(O)(SBu)2 from tribufos.GSP(S)(OEt)2 and GSP(O)(SBu)2 are the first S-phosphoglutathione metabolites observed in vitro and in vivo directly by LC-ESI-MS.Nine other OP pesticides gave only O-dealkylation in the GST/GSH system.GST-catalyzed metabolism joins P450s and hydrolases as important contributors to OP detoxification.
机译:农药的解毒是选择性毒性和安全性评估的主要特征。其中涉及的两个主要酶分别是GSH S-转移酶(GST)和细胞色素P450,它们共同起作用。有机磷(OP)化合物是100多种农药,但除少数例外,它们的GSH偶联物尚未在体外或体内直接观察到。主要的杀虫剂毒死rif(CP)和二嗪农作为具有多种代谢产物的多功能底物特别受关注,而ClP(S)(OEt)2和棉质脱叶剂是研究了GST与GSH偶联形成GSH偶联物的体外情况,研究了有无人源微粒体或带有NADPH的P450 3A4的代谢活化,并通过液相色谱-电喷雾电离质谱(LC-ESI)分析了代谢产物-MS)。从CP和毒死ox(CPO)中鉴定出五个GSH结合物,即GSCP和GSCPO,其中CP和CPO的6-氯取代基是分别由GSH; S-(3,5,6-三氯吡啶-2-基)谷胱甘肽; 5-(3,5-二氯-6-羟基吡啶-2-基)谷胱甘肽和S-乙基谷胱甘肽置换。人肝微粒体制剂,而不是含有GSH的P450 3A4,将CP代谢为GSCP。通过GST和GSH,二嗪农和重氮酮产生S-(2-异丙基-4-甲基嘧啶-6-基)谷胱甘肽和ClP(S)(OEt)2产生GSP-(S)(OEt)2。用微粒体,NADPH,GST和GSH tribufos产生GSP(O)(SBu)2。腹膜内处理的小鼠肝脏中含有CP,GSP(S)(OEt)2的GSCP。来自ClP(S)(OEt)2和来自tribufos的GSP(O)(SBu)2.GSP(S)(OEt)2和GSP(O)(SBu)2是在体外和体外观察到的首批S-磷酸谷胱甘肽代谢产物直接通过LC-ESI-MS在体内进行检测。其他9种OP农药在GST / GSH系统中仅使O-脱烷基化.GST催化的新陈代谢连接了P450和水解酶,这是OP排毒的重要原因。

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