首页> 美国卫生研究院文献>Environmental Health Perspectives >Involvement of cytochrome P450 glutathione S-transferase and epoxide hydrolase in the metabolism of aflatoxin B1 and relevance to risk of human liver cancer.
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Involvement of cytochrome P450 glutathione S-transferase and epoxide hydrolase in the metabolism of aflatoxin B1 and relevance to risk of human liver cancer.

机译:细胞色素P450谷胱甘肽S-转移酶和环氧化物水解酶参与黄曲霉毒素B1的代谢及其与人类肝癌风险的相关性。

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摘要

In recent years there has been considerable interest in the effect of variations in activities of xenobiotic-metabolizing enzymes on cancer incidence. This interest has accelerated with the development of methods for analyzing genetic polymorphisms. However, progress in epidemiology has been slow and the contributions of polymorphisms to risks from individual chemicals and mixtures are often controversial. A series of studies is presented to show the complexities encountered with a single chemical, aflatoxin B1 (AFB1). AFB1 is oxidized by human cytochrome P450 enzymes to several products. Only one of these, the 8,9-exo-epoxide, appears to be mutagenic and the others are detoxication products. P450 3A4, which can both activate and detoxicate AFB1, is found in the liver and the small intestine. In the small intestine, the first contact after oral exposure, epoxidation would not lead to liver cancer. The (nonenzymatic) half-life of the epoxide has been determined to be approximately 1 sec at 23 degrees C and neutral pH. Although the half-life is short, AFB1-8,9-exo-epoxide does react with DNA and glutathione S-transferase. Levels of these conjugates have been measured and combined with the rate of hydrolysis in a kinetic model to predict constants for binding of the epoxide with DNA and glutathione S-transferase. A role for epoxide hydrolase in alteration of AFB1 hepatocarcinogenesis has been proposed, although experimental evidence is lacking. Some inhibition of microsome-generated genotoxicity was observed with rat epoxide hydrolase; further information on the extent of contribution of this enzyme to AFB1 metabolism is not yet available.
机译:近年来,对异种代谢酶活性变化对癌症发生率的影响引起了极大的兴趣。随着分析遗传多态性的方法的发展,这种兴趣得到了加速。但是,流行病学进展缓慢,多态性对个别化学品和混合物的风险的贡献通常是有争议的。提出了一系列研究,以显示单一化学药品黄曲霉毒素B1(AFB1)遇到的复杂性。 AFB1被人类细胞色素P450酶氧化为多种产物。其中只有8,9-exo-epoxy似乎是诱变的,其他则是脱毒产品。在肝脏和小肠中发现了既能激活又能使AFB1解毒的P450 3A4。在小肠中,口服接触后第一次接触,环氧化不会导致肝癌。在23摄氏度和中性pH下,环氧化物的(非酶)半衰期已确定为约1秒。尽管半衰期很短,但AFB1-8,9-exo-epoxide确实会与DNA和谷胱甘肽S-转移酶发生反应。已经测量了这些缀合物的水平,并在动力学模型中将其与水解速率结合起来,以预测环氧化物与DNA和谷胱甘肽S-转移酶结合的常数。尽管缺乏实验证据,但有人提出环氧水解酶在AFB1肝癌发生改变中的作用。大鼠环氧化物水解酶对微粒体产生的基因毒性有一定的抑制作用。该酶对AFB1代谢的贡献程度尚无进一步的信息。

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