Determination and analysis of single nucleotide polymorphisms and haplotype structure of the human carboxylesterase 2 gene.

Michael H Wu, Peixian Chen, Xiaolin Wu, Wanqing Liu, Stephen Strom, Soma Das, Edwin H Cook, Gary L Rosner, M Eileen Dolan
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引用次数: 41

Abstract

Carboxylesterases are members of the serine esterase super family important in the metabolism of a wide variety of substrates, including xenobiotics and prodrugs. There are two known carboxylesterases expressed in human liver, small intestine and other tissues, carboxylesterase 1 (CES1) and carboxylesterase 2 (CES2). The aim of this study was to identify polymorphisms in the CES2 gene and determine whether these polymorphisms affect expression levels of CES2 or rate of metabolism of irinotecan (7-ethyl-10-[4-(1-piperidino)-1-piperidino] carbonyloxy-camptothecin). Microsome samples prepared from liver tissues of 78 normal individuals were used to determine the rate of hydrolysis of irinotecan and procaine (an anaesthetic hydrolysed by CES2 but not CES1). The rate of hydrolysis of irinotecan is highly variable among individuals, ranging from 2.7-138 pmol/mg protein/h (mean +/- SD 26.0 +/- 22.9). Fifteen single nucleotide polymorphisms (SNPs) were identified, one is in an exon, 9 are in introns, three are in the 3'-untranslated region (UTR), and two are in the 5'-flanking region. Eight of the 15 SNP loci have rare allele frequencies greater than 5%, of which three were greater than 20%. Genotyping of samples from the SNP Consortium demonstrated different distributions among African-Americans, Asian-Americans and European-Americans. We also analysed the haplotype structure and estimated linkage disequilibrium (LD). A SNP located in the 5'-UTR (5'-UTR-363) was found in LD with loci in intron 1 (Intron1 + 947, Intron1 + 1361, Intron1 + 1643). Haplotypes with homozygous rare alleles on these loci exhibit lower mRNA levels as determined by real time polymerase chain reaction (P < 0.01) and the incorporation of rare alleles in haplotypes correlate with reduced mRNA (P = 0.03). The 5'-UTR-363 SNP is located in one of the three promoters of CES2. However, we did not observe significant differences in CES2 activities (irinotecan and procaine hydrolysis) among individuals with different haplotypes.

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人羧酸酯酶2基因单核苷酸多态性和单倍型结构的测定与分析。
羧酸酯酶是丝氨酸酯酶超家族的成员,在多种底物的代谢中起重要作用,包括外源药物和前药。已知在人肝脏、小肠等组织中表达的羧酸酯酶有两种:羧酸酯酶1 (CES1)和羧酸酯酶2 (CES2)。本研究的目的是鉴定CES2基因的多态性,并确定这些多态性是否影响CES2的表达水平或伊立替康(7-乙基-10-[4-(1-哌啶醇)-1-哌啶醇]羰基喜树碱)的代谢率。从78个正常人的肝组织中制备的微粒体样本用于测定伊立替康和普鲁卡因(一种被CES2水解而非CES1水解的麻醉剂)的水解率。伊立替康的水解速率因人而异,范围为2.7-138 pmol/mg蛋白/h(平均+/- SD 26.0 +/- 22.9)。共鉴定出15个单核苷酸多态性(snp), 1个位于外显子,9个位于内含子,3个位于3'-非翻译区(UTR), 2个位于5'-侧翼区。15个SNP位点中有8个罕见等位基因频率大于5%,其中3个等位基因频率大于20%。SNP联盟样本的基因分型显示非洲裔美国人、亚裔美国人和欧裔美国人的分布不同。我们还分析了单倍型结构和估计连锁不平衡(LD)。在LD中发现位于5'-UTR (5'-UTR-363)的SNP位点位于内含子1 (Intron1 + 947, Intron1 + 1361, Intron1 + 1643)。实时聚合酶链反应(real - time polymerase chain reaction)结果显示,在这些位点上存在纯合子稀有等位基因的单倍型mRNA水平较低(P < 0.01),而稀有等位基因在单倍型中的掺入与mRNA的减少相关(P = 0.03)。5'-UTR-363 SNP位于CES2的三个启动子之一。然而,我们没有观察到不同单倍型个体之间CES2活性(伊立替康和普鲁卡因水解)的显著差异。
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