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Cytochrome P450s and molecular epidemiology

机译:细胞色素p450s和分子流行病学

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Cytochrome P450 (P450) represent a superfamily of heme-containing monooxygenases that are found throughout the animal and plant kingdoms and in many microorganisms. A number of these enzymes are involved in biosynthetic pathways of steroid synthesis but in mammals the vast majority of P450s function to metabolize foreign chemicals or xenobiotics. In the classical phase I reactions on the latter, a membrane-bound P450 will hydroxylate a compound, usually hydrophobic in nature, and the hydroxyl group will serve as a substrate for the various transferases or phase II enzymes that attach hydrophilic substituents such as glutathione, sulfate or glucuronic acid. Some chemicals, however, are metabolically-activated by P450s to electrophiles capable of reacting with cellular macromolecules. The cellular concentrations of the chemical and P450, reactivity of the active metabolite with nucleic acid and the repairability of the resultant adducts, in addition to the nature of the cell type, likely determines whether a chemical will be toxic and kill the cell or will transform the cell. Immunocorrelative and cDNA-directed expression have been used to define the substrate specificities of numerous human P450s. Levels of expression of different human P450 forms have been measured by both in vivo and in vitro methodologies leading to the realization that a large degree of interindividual differences occur in P450 expression. Reliable procedures for measuring P450 expression in healthy and diseased subjects will lead to prospective and case-cohort studies to determine whether interindividual differences in levels of P450 are associated with susceptibility or resistance to environmentally-based disease.
机译:细胞色素P450(P450)代表含血红素的单氧基酶的超家族,这些单氧基酶在整个动物和植物王国和许多微生物中发现。许多这些酶参与类固醇合成的生物合成途径,但在哺乳动物中,绝大多数P450S可以代谢外来化学物质或异种症。在后者的经典阶段I反应中,膜结合的P450将羟基化化合物,通常是疏水性的,并且羟基将用作各种转移酶的底物或配合亲水性取代基(如谷胱甘肽)的主要转移酶或II型酶。硫酸盐或葡糖醛酸。然而,一些化学物质由P450S和能够与细胞大分子反应的电子手术来代谢激活。化学和P450的细胞浓度,活性代谢物与核酸的反应性和所得加合物的可修复性,除了细胞类型的性质之外,还可以确定化学物质是否会毒性和杀死细胞或将变换细胞。已使用免疫功能性和CDNA定向的表达来定义许多人P450s的底物特异性。通过体内和体外方法测量不同人类P450形式的表达水平,从而实现了在P450表达中发生了很大程度的接口差异。用于测量健康和患病受试者的P450表达的可靠程序将导致前瞻性和案例 - 群组研究,以确定P450水平是否与易感性或对环境疾病的抵抗有关。

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