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Polymorphisms of human nuclear receptors that control expression of drug-metabolizing enzymes.

机译:人核受体的多态性,控制药物代谢酶的表达。

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摘要

Phenotypic variation in human drug metabolism frequently can be attributed to polymorphisms in genes that encode drug-metabolizing enzymes (DMEs). However, levels of Phase I and Phase II DMEs also vary because many of these enzymes are induced by a myriad of xenobiotic chemicals. Individual differences in the capacity for induction contribute to variation in drug metabolism in human populations. Induction is mediated by intracellular receptors that act as ligand-dependent transcription factors, including several members of the nuclear receptor (NR) superfamily and the aryl hydrocarbon receptor (AHR). Genetic variations (SNPs and others) exist in genes that encode these human receptors but few of the known polymorphisms have any significant effect on enzyme induction. We suggest that the current scarcity of SNPs that are able to alter function in the DME-regulating NRs reflects considerable evolutionary selective pressures that conserve the key functional domains in these receptors.
机译:人类药物代谢中的表型变异通常可归因于编码药物代谢酶(DME)的基因中的多态性。但是,I期和II期DME的水平也会发生变化,因为其中许多酶都是由多种异生素化学物质诱导的。诱导能力的个体差异导致人群中药物代谢的变化。诱导由充当配体依赖性转录因子的细胞内受体介导,包括核受体(NR)超家族和芳基烃受体(AHR)的几个成员。遗传变异(SNP和其他变异)存在于编码这些人类受体的基因中,但是很少有已知的多态性对酶的诱导有显着影响。我们建议当前能够改变DME调节NRs中的功能的SNP的稀缺反映了相当大的进化选择性压力,这些压力保留了这些受体的关键功能域。

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