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用谷胱甘肽-γ-谷氨酰转肽酶系统对致癌物处理大鼠肝脏切片中癌前病变的氧化损伤进行定位。

Localization of oxidative damage by a glutathione-gamma-glutamyl transpeptidase system in preneoplastic lesions in sections of livers from carcinogen-treated rats.

作者信息

Stark A A, Russell J J, Langenbach R, Pagano D A, Zeiger E, Huberman E

机构信息

Department of Biochemistry, Tel-Aviv University, Ramat-Aviv, Israel.

出版信息

Carcinogenesis. 1994 Feb;15(2):343-8. doi: 10.1093/carcin/15.2.343.

Abstract

Previous studies from our laboratories have shown that catabolism of glutathione (GSH) by gamma-glutamyl transpeptidase (GGT) in the presence of transition metals leads to oxidative damage (OD). This damage is exemplified in vitro by GGT-dependent GSH mutagenesis which involves reactive oxygen species and by GGT-dependent accumulation of lipid peroxidation (LPO) products in systems containing polyunsaturated fatty acid and GSH. In order to test whether catabolism of GSH by membranal GGT in enzyme-altered preneoplastic hepatic lesions can induce oxidative damage in situ, and to test whether the OD is localized in these lesions, 21 day old Fischer rats were treated with 12 mg/kg diethylnitrosamine (DEN) followed by 0.1% or 0.25% phenobarbital (PB) in the diet. Cryostat sections were examined histochemically for GGT-rich hepatic lesions. Adjacent sections were incubated with GSH and iron and examined for areas staining for lipid peroxidation. Distinct LPO-positive areas were shown to correspond well with the GGT-positive hepatic lesions. Promotion with 0.25% PB led to increasing proportions of LPO-positive lesions with time among GGT-positive lesions. The visualization of LPO in GGT-rich hepatic lesions depended on the presence of GSH and iron, and was not observed following chelation of iron by diethyl triaminopentaacetic acid (DTPA), in the presence of acivicin, an inhibitor of GGT, or in the presence of the radical scavenger butylated hydroxytoluene (BHT). The factors affecting GSH-GGT-dependent LPO in the GGT-rich foci were identical to those affecting GSH-GGT-driven LPO in vitro, and were similar to those affecting oxidative GSH-mutagenesis catalyzed by GGT. The results indicate that metabolism of GSH by GGT in preneoplastic liver foci can initiate an oxidative process leading to a radical-rich environment and to oxidative damage. Such damage may contribute to the processes by which cells within such foci progress to malignancy.

摘要

我们实验室之前的研究表明,在过渡金属存在的情况下,γ-谷氨酰转肽酶(GGT)对谷胱甘肽(GSH)的分解代谢会导致氧化损伤(OD)。这种损伤在体外表现为依赖GGT的GSH诱变,其中涉及活性氧,以及在含有多不饱和脂肪酸和GSH的系统中依赖GGT的脂质过氧化(LPO)产物积累。为了测试酶改变的癌前肝损伤中膜结合GGT对GSH的分解代谢是否能在原位诱导氧化损伤,以及测试氧化损伤是否定位于这些病变中,对21日龄的Fischer大鼠给予12 mg/kg二乙基亚硝胺(DEN),随后在饮食中添加0.1%或0.25%的苯巴比妥(PB)。用低温恒温器切片进行组织化学检查,以寻找富含GGT的肝损伤。相邻切片与GSH和铁一起孵育,并检查脂质过氧化染色区域。结果显示,明显的LPO阳性区域与GGT阳性肝损伤高度对应。用0.25% PB促进导致GGT阳性损伤中LPO阳性损伤的比例随时间增加。富含GGT的肝损伤中LPO的可视化取决于GSH和铁的存在,在二乙三胺五乙酸(DTPA)螯合铁后、在GGT抑制剂阿西维辛存在时或在自由基清除剂丁基羟基甲苯(BHT)存在时均未观察到。影响富含GGT的病灶中GSH-GGT依赖性LPO的因素与影响体外GSH-GGT驱动的LPO的因素相同,并且与影响GGT催化的氧化性GSH诱变的因素相似。结果表明,癌前肝病灶中GGT对GSH的代谢可引发氧化过程,导致富含自由基的环境和氧化损伤。这种损伤可能有助于这些病灶内的细胞发展为恶性肿瘤的过程。

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