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首页> 外文期刊>Pharmacogenetics and genomics >Impaired expression of CYP2D6 in intermediate metabolizers carrying the *41 allele caused by the intronic SNP 2988G>A: evidence for modulation of splicing events.
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Impaired expression of CYP2D6 in intermediate metabolizers carrying the *41 allele caused by the intronic SNP 2988G>A: evidence for modulation of splicing events.

机译:内含子SNP 2988G> A导致带有* 41等位基因的中间代谢产物中CYP2D6的表达受损:调节剪接事件的证据。

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摘要

We investigated the molecular basis for low expression and activity of CYP2D6 associated with the CYP2D6*41 allele in about 10-15% of Caucasians with intermediate metabolizer phenotype. With respect to two previously described polymorphisms in the promoter (-1584C>G) and in intron 6 (2988G>A; c.985+39G>A), the three most frequent functional alleles have the distinct haplotypes 2D6*1[CG], 2D6*2[GG] and 2D6*41[CA], respectively. Reporter gene analyses in transiently transfected HepG2 and Huh7 hepatoma cells did not indicate changes in transcription rate by these polymorphisms. By reverse-transcription polymerase chain reaction analysis of liver RNA of genotyped patients, however, we discovered that the 2988G>A change was associated with increased levels of a nonfunctional splice variant lacking exon 6. Quantification by denaturing high-performance liquid chromatography revealed up to 7.3-fold increased levels of the splice variant and up to 2.9-fold less functional transcript in carriers of 2D6*41, in good concordance with concomitant changes in immunoquantified CYP2D6 protein. Recombinant expression of the entire genomic sequence coding for 2D6*41, 2D6*2 and 2D6*1 alleles but lacking the upstream region in COS-1 and Huh7 cell lines resulted in two-fold to five-fold reduced levels of CYP2D6 mRNA containing exon 6, apoprotein and enzyme activity of 2D6*41. These experiments establish the causal relationship between the intron 6 single-nucleotide polymorphism 2988G>A and the low expression phenotype associated with allele 2D6*41. These data improve the CYP2D6 genotype-phenotype relationship and they demonstrate that major phenotype changes occurring in large population subgroups can be caused by intronic polymorphisms outside of splice site consensus sequences.
机译:我们调查了CYP2D6与CYP2D6 * 41等位基因相关的CYP2D6低表达和活性的分子基础,约有10-15%的白种人具有中间代谢者表型。关于启动子(-1584C> G)和内含子6(2988G> A; c.985 + 39G> A)中两个先前描述的多态性,三个最常见的功能等位基因具有不同的单倍型2D6 * 1 [CG]。 ,2D6 * 2 [GG]和2D6 * 41 [CA]。瞬时转染的HepG2和Huh7肝癌细胞中的Reporter基因分析未显示这些多态性引起的转录速率变化。通过对基因型患者肝RNA的逆转录聚合酶链反应分析,我们发现2988G> A的变化与缺乏外显子6的非功能性剪接变体水平升高有关。通过变性高效液相色谱进行定量分析显示2D6 * 41携带者中剪接变体的水平增加了7.3倍,而功能性转录本最多减少了2.9倍,这与免疫定量CYP2D6蛋白的伴随变化非常一致。编码2D6 * 41、2D6 * 2和2D6 * 1等位基因但在COS-1和Huh7细胞系中缺少上游区域的整个基因组序列的重组表达导致含外显子的CYP2D6 mRNA水平降低了2到5倍6,载脂蛋白和酶活性为2D6 * 41。这些实验建立了内含子6单核苷酸多态性2988G> A与等位基因2D6 * 41相关的低表达表型之间的因果关系。这些数据改善了CYP2D6基因型与表型的关系,并且它们表明在大型人群亚群中发生的主要表型变化可能是由剪接位点共有序列之外的内含子多态性引起的。

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