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A free energy approach to the prediction of olefin and epoxide mutagenicity and carcinogenicity

机译:一种自由能方法来预测烯烃和环氧化物的致突变性和致癌性

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The mutagenic and carcinogenic effects of strong alkylating agents, such as epoxides, have been attributed to their ability to covalently bind DNA in vivo. Most olefins are readily oxidized to reactive epoxides by CytP450. In an effort to develop predictive models for olefin and epoxide mutagenicity, the ring openings of 15 halogen-, alkyl-, alkenyl-, and aryl-substituted epoxides were modeled by quantum-mechanical transition state calculations using MP2/6-31+G(d,p) in the gas phase and in aqueous solution. Free energies of activation (ΔG?) and free energies of reaction (ΔGrxn) were computed for each epoxide in the series. This study finds that an aqueous solution ΔGrxn threshold value of approximately -14.7 kcal/mol can be used to discern mutagenic/carcinogenic epoxides (ΔGrxn -14.7 kcal/mol) from nonmutagens/ noncarcinogens (ΔGrxn -14.7 kcal/mol). The computed reaction thermodynamics are appropriate regardless of ring-opening mechanism in vivo and are thus proposed as an effective in silico screen and design guideline for decreasing potential mutagenicity and carcinogenicity of olefins and their respective epoxides.
机译:强烷基化剂(例如环氧化物)的诱变和致癌作用已归因于它们在体内共价结合DNA的能力。大多数烯烃很容易被CytP450氧化成反应性环氧化物。为了开发用于预测烯烃和环氧化物致突变性的预测模型,通过使用MP2 / 6-31 + G(-)进行量子力学过渡态计算,对15个卤素,烷基,烯基和芳基取代的环氧化物的开环进行了建模。 d,p)在气相和水溶液中。对于该系列中的每个环氧化物,计算了活化的自由能(ΔG2)和反应的自由能(ΔGrxn)。这项研究发现,大约-14.7 kcal / mol的水溶液ΔGrxn阈值可用于区分非突变体/非致癌物(ΔGrxn> -14.7 kcal / mol)的致突变性/致癌性环氧化物(ΔGrxn<-14.7 kcal / mol)。所计算的反应热力学是合适的,而与体内的开环机制无关,因此被建议作为有效的计算机筛选和设计指南,用于降低烯烃及其各自环氧化物的潜在诱变性和致癌性。

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