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鉴定新型 CYP2D7-2D6 杂合子:无功能和功能变体。

Identification of Novel CYP2D7-2D6 Hybrids: Non-Functional and Functional Variants.

机构信息

Division of Developmental Pharmacology and Experimental Therapeutics, The Children's Mercy Hospital and Clinics Kansas City, MO, USA.

出版信息

Front Pharmacol. 2010 Oct 4;1:121. doi: 10.3389/fphar.2010.00121. eCollection 2010.

Abstract

Polymorphic expression of CYP2D6 contributes to the wide range of activity observed for this clinically important drug metabolizing enzyme. In this report we describe novel CYP2D7/2D6 hybrid genes encoding non-functional and functional CYP2D6 protein and a CYP2D7 variant that mimics a CYP2D7/2D6 hybrid gene. Five-kilobyte-long PCR products encompassing the novel genes were entirely sequenced. A quantitative assay probing in different gene regions was employed to determine CYP2D6 and 2D7 copy number variations and the relative position of the hybrid genes within the locus was assessed by long-range PCR. In addition to the previously known CYP2D613 and 66 hybrids, we describe three novel non-functional CYP2D7-2D6 hybrids with gene switching in exon 2 (CYP2D679), intron 2 (CYP2D680), and intron 5 (CYP2D667). A CYP2D7-specific T-ins in exon 1 causes a detrimental frame shift. One subject revealed a CYP2D7 conversion in the 5'-flanking region of a CYP2D635 allele, was otherwise unaffected (designated CYP2D635B). Finally, three DNAs revealed a CYP2D7 gene with a CYP2D6-like region downstream of exon 9 (designated CYP2D7[REP6]). Quantitative copy number determination, sequence analyses, and long-range PCR mapping were in agreement and excluded the presence of additional gene units. Undetected hybrid genes may cause over-estimation of CYP2D6 activity (CYP2D61/*1 vs *1/hybrid, etc), but may also cause results that may interfere with the genotype determination. Detection of hybrid events, "single" and tandem, will contribute to more accurate phenotype prediction from genotype data.

摘要

CYP2D6 的多态性表达导致这种临床上重要的药物代谢酶的活性范围广泛。在本报告中,我们描述了新型 CYP2D7/2D6 杂合基因,其编码无功能和功能 CYP2D6 蛋白以及模拟 CYP2D7/2D6 杂合基因的 CYP2D7 变体。涵盖新型基因的 5kb 长 PCR 产物被完全测序。采用定量检测方法探测不同基因区域,以确定 CYP2D6 和 2D7 的拷贝数变异,以及通过长距离 PCR 评估杂交基因在基因座内的相对位置。除了先前已知的 CYP2D613 和 66 杂合子外,我们还描述了三个新型无功能 CYP2D7-2D6 杂合子,它们在exon2(CYP2D679)、intron2(CYP2D680)和 intron5(CYP2D667)中发生基因切换。exon1 中的 CYP2D7 特异性 T-插入导致有害的移码。一个个体显示 CYP2D635 等位基因 5'侧翼区的 CYP2D7 转换,但其他方面不受影响(命名为 CYP2D635B)。最后,三个 DNA 揭示了一个 CYP2D7 基因,其 exon9 下游具有 CYP2D6 样区域(命名为 CYP2D7[REP6])。定量拷贝数测定、序列分析和长距离 PCR 图谱一致,排除了其他基因单位的存在。未检测到的杂合基因可能导致 CYP2D6 活性的高估(CYP2D61/1 与1/杂合子等),但也可能导致与基因型测定相干扰的结果。检测杂合事件,“单”和串联,将有助于从基因型数据更准确地预测表型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/872a/3153001/f11300077372/fphar-01-00121-g001.jpg

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