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硫代乙酰胺代谢物在大鼠肝细胞内和体外对脂质和蛋白质的共价修饰。

Covalent modification of lipids and proteins in rat hepatocytes and in vitro by thioacetamide metabolites.

机构信息

Department of Medicinal Chemistry, The University of Kansas, Lawrence, KA 66045, USA.

出版信息

Chem Res Toxicol. 2012 Sep 17;25(9):1868-77. doi: 10.1021/tx3001658. Epub 2012 Jun 15.

Abstract

Thioacetamide (TA) is a well-known hepatotoxin in rats. Acute doses cause centrilobular necrosis and hyperbilirubinemia while chronic administration leads to biliary hyperplasia and cholangiocarcinoma. Its acute toxicity requires its oxidation to a stable S-oxide (TASO) that is oxidized further to a highly reactive S,S-dioxide (TASO(2)). To explore possible parallels among the metabolism, covalent binding, and toxicity of TA and thiobenzamide (TB), we exposed freshly isolated rat hepatocytes to [(14)C]-TASO or [(13)C(2)D(3)]-TASO. TLC analysis of the cellular lipids showed a single major spot of radioactivity that mass spectral analysis showed to consist of N-acetimidoyl PE lipids having the same side chain composition as the PE fraction from untreated cells; no carbons or hydrogens from TASO were incorporated into the fatty acyl chains. Many cellular proteins contained N-acetyl- or N-acetimidoyl lysine residues in a 3:1 ratio (details to be reported separately). We also oxidized TASO with hydrogen peroxide in the presence of dipalmitoyl phosphatidylenthanolamine (DPPE) or lysozyme. Lysozyme was covalently modified at five of its six lysine side chains; only acetamide-type adducts were formed. DPPE in liposomes also gave only amide-type adducts, even when the reaction was carried out in tetrahydrofuran with only 10% water added. The exclusive formation of N-acetimidoyl PE in hepatocytes means that the concentration or activity of water must be extremely low in the region where TASO(2) is formed, whereas at least some of the TASO(2) can hydrolyze to acetylsulfinic acid before it reacts with cellular proteins. The requirement for two sequential oxidations to produce a reactive metabolite is unusual, but it is even more unusual that a reactive metabolite would react with water to form a new compound that retains a high degree of chemical reactivity toward biological nucleophiles. The possible contribution of lipid modification to the hepatotoxicity of TA/TASO remains to be determined.

摘要

硫代乙酰胺(TA)是大鼠中一种众所周知的肝毒素。急性剂量会导致中央小叶坏死和高胆红素血症,而慢性给药则导致胆管增生和胆管癌。其急性毒性需要其氧化为稳定的 S-氧化物(TASO),然后进一步氧化为高反应性的 S,S-二氧化物(TASO(2))。为了探索 TA 和硫代苯甲酰胺(TB)的代谢、共价结合和毒性之间的可能相似性,我们将新鲜分离的大鼠肝细胞暴露于[(14)C]-TASO 或[(13)C(2)D(3)]-TASO。细胞脂质的 TLC 分析显示出一个放射性的主要斑点,质谱分析表明该斑点由具有与未处理细胞的 PE 部分相同侧链组成的 N-乙酰基-PE 脂质组成;TASO 中的没有碳或氢被掺入脂肪酸链中。许多细胞蛋白含有 N-乙酰基或 N-乙酰基赖氨酸残基,比例为 3:1(详细信息将单独报告)。我们还使用过氧化氢在二棕榈酰磷脂酰乙醇胺(DPPE)或溶菌酶存在下氧化 TASO。溶菌酶的六个赖氨酸侧链中有五个被共价修饰;仅形成酰胺型加合物。即使在反应仅在四氢呋喃中进行且仅加入 10%水的情况下,DPPE 在脂质体中也仅给出酰胺型加合物。肝细胞中仅形成 N-乙酰基-PE 意味着在形成 TASO(2)的区域中,水的浓度或活性必须极低,而至少一些 TASO(2)可以在与细胞蛋白反应之前水解为乙酰亚磺酸。产生反应性代谢物需要两次连续氧化是不寻常的,但更不寻常的是,反应性代谢物会与水反应形成一种新化合物,该化合物对生物亲核试剂保持高度的化学反应性。脂质修饰对 TA/TASO 肝毒性的可能贡献仍有待确定。

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