首页> 外文期刊>Teratogenesis, carcinogenesis, and mutagenesis >A quantitative structure-activity relationship (QSAR) study of mutagenicity in several series of organic chemicals likely to be activated by cytochrome P450 enzymes.
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A quantitative structure-activity relationship (QSAR) study of mutagenicity in several series of organic chemicals likely to be activated by cytochrome P450 enzymes.

机译:定量结构-活性关系(QSAR)研究了可能被细胞色素P450酶激活的几种有机化学物质的致突变性。

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摘要

The results of quantitative structure-activity relationship (QSAR) studies on six series of compounds exhibiting indirect mutagenic activity are reported. These findings demonstrate the importance of frontier orbital energies and, in some cases, frontier orbital electronic populations to overall mutagenicity in diverse polyaromatic hydrocarbons, benzidines and aminobiphenyls, benzonitrofurans, nitrogenous cooked-food mutagens, benzanthracenes, and chrysenes. The correlations between structural parameters and mutagenic potency vary from R=0.81 to R=0.97, and these findings are discussed in the context of possible molecular mechanisms of mutagenicity. In particular, it is generally regarded that cytochrome P450-mediated activation of polyaromatic hydrocarbons and their amino derivatives plays an important role in mutagenic activity. In this respect, it is apparent that enzymes of the cytochrome P4501 (CYP1) family are closely associated with the metabolic activation of polyaromatic mutagens and carcinogens via the generation of reactive intermediates (usually electrophilic in nature) that attack DNA. The findings presented in this study indicate that QSAR analyses on several series of compounds are consistent with the known evidence of procarcinogen activation mechanisms, particularly for polyaromatic hydrocarbons and their heterocyclic/amino derivatives, pointing to the importance of frontier orbital energy values in particular. Teratogenesis Carcinog. Mutagen. Suppl. 1:187-193, 2003. Copyright 2003 Wiley-Liss, Inc.
机译:报道了对具有间接诱变活性的六个系列化合物进行定量构效关系(QSAR)研究的结果。这些发现证明了前沿轨道能量的重要性,并且在某些情况下,前沿轨道电子种群对于多种聚芳烃,联苯胺和氨基联苯,苯并硝基呋喃,含氮熟食诱变剂,苯并蒽和菊的整体致突变性具有重要意义。结构参数与诱变力之间的相关性从R = 0.81到R = 0.97,并且在诱变的可能分子机制的背景下讨论了这些发现。特别地,通常认为细胞色素P450介导的多环芳烃及其氨基衍生物的活化在诱变活性中起重要作用。在这方面,很明显,细胞色素P4501(CYP1)家族的酶通过攻击DNA的反应性中间体(通常是亲电子的)的产生与多芳族诱变剂和致癌物的代谢活化密切相关。这项研究中提出的发现表明,对几种系列化合物的QSAR分析与致癌物活化机制的已知证据相一致,尤其是对于多环芳烃及其杂环/氨基衍生物,这特别指出了前沿轨道能量值的重要性。致癌作用。诱变剂。补充1:187-193,2003年。版权所有2003 Wiley-Liss,Inc.。

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