CYP2D6基因分析与解释的复杂性。

Andrea Gaedigk
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引用次数: 192

摘要

细胞色素P450 2D6 (CYP2D6)在约25%的临床使用药物的代谢和生物激活中起重要作用,包括许多抗抑郁药、抗精神病药和阿片类药物。CYP2D6活性变化很大,从所谓的代谢不良者无活性到活性分布极端的超快速代谢者。这种变异性的很大一部分可以用CYP2D6基因位点的高度多态性来解释,迄今为止已确定的CYP2D6基因位点有100多个变体和亚变体。不同种族的等位基因频率差异显著;有些只在某些人群中出现。药物遗传学检测通过识别CYP2D6二倍型患者,使他们在经历剂量相关不良事件或治疗失败的风险增加,从而有希望实现个体化药物治疗。然而,由于CYP2D6基因位点的复杂性,推断患者的CYP2D6代谢能力或表型是一项具有挑战性的任务。等位基因变异包括snp、小的插入和缺失、基因拷贝数变异以及与CYP2D7(一个高度相关的非功能基因)的重排。本文综述了CYP2D6变异和基因型分析的复杂性,这些知识对于将基因型转化为临床有用的信息是非常宝贵的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Complexities of CYP2D6 gene analysis and interpretation.

Cytochrome P450 2D6 (CYP2D6) plays an important role in the metabolism and bioactivation of about 25% of clinically used drugs including many antidepressants, antipsychotics and opioids. CYP2D6 activity is highly variably ranging from no activity in so-called poor metabolizers to ultrarapid metabolism at the other end of the extreme of the activity distribution. A large portion of this variability can be explained by the highly polymorphic nature of the CYP2D6 gene locus for which > 100 variants and subvariants identified to date. Allele frequencies vary markedly between ethnic groups; some have exclusively or predominantly only been observed in certain populations. Pharmacogenetic testing holds the promise of individualizing drug therapy by identifying patients with CYP2D6 diplotypes that puts them at an increased risk of experiencing dose-related adverse events or therapeutic failure. Inferring a patient's CYP2D6 metabolic capacity, or phenotype, however, is a challenging task due to the complexity of the CYP2D6 gene locus. Allelic variation includes SNPs, small insertions and deletions, gene copy number variation and rearrangements with CYP2D7, a highly related non-functional gene. This review provides a summary of the intricacies of CYP2D6 variation and genotype analysis, knowledge that is invaluable for the translation of genotype into clinically useful information.

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