Effect of caloric restriction on the metabolic activation of xenobiotics

Ming W. Chou , Jin Kong , King-Thom Chung , Ronald W. Hart
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引用次数: 33

Abstract

The effect of caloric restriction (CR) on xenobiotic metabolizing enzyme activities results in alterations in the metabolic activation of chemical carcinogens, with a resultant impact on DNA-carcinogen adduct formation and DNA repair. Using aflatoxin B1 (AFB1) and benzo[a]pyrene (BP) as model carcinogens, we studied the effect of CR on the metabolic activation of these carcinogens and carcinogen-induced DNA damage and repair in terms of AFB1-DNA and BP-DNA adduct formation and removal. Male Fischer 344 rats fed calorie restricted diets (60% of the food consumption for ad libitum-fed rats) showed a reduction in the metabolic activation of AFB1 and decrease in both the in vitro and in vivo AFB1-DNA adduct formation. However, CR increased the activity of BP metabolizing enzymes resulting in an enhancement of BP-DNA adduct formation. Our results indicate that the effect of CR on metabolic activation of xenobiotics is dependent upon the selected xenobiotic metabolizing enzymes whose activities may be significantly altered by CR, and upon the nature of the chemical carcinogens which exert different structure-activity relationships during the process of chemically induced carcinogenesis.

热量限制对异种生物代谢激活的影响
热量限制(CR)对外源代谢酶活性的影响导致化学致癌物代谢激活的改变,从而影响DNA-致癌物加合物的形成和DNA修复。我们以黄曲霉毒素B1 (AFB1)和苯并[a]芘(BP)为模型致癌物,从AFB1-DNA和BP-DNA加合物的形成和去除两方面研究了CR对这些致癌物的代谢激活以及致癌物诱导的DNA损伤和修复的影响。饲喂热量限制饮食的雄性Fischer 344大鼠(自由喂养大鼠的食物消耗量的60%)显示AFB1的代谢激活减少,体外和体内AFB1- dna加合物形成减少。然而,CR增加了BP代谢酶的活性,从而增强了BP- dna加合物的形成。我们的研究结果表明,CR对外生物代谢激活的影响取决于所选择的外生物代谢酶的活性可能被CR显著改变,以及化学致癌物的性质,这些化学致癌物在化学诱导致癌过程中发挥不同的构效关系。
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