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利用基因分型芯片筛查中国汉族人群中的CYP3A单核苷酸多态性。

Screening CYP3A single nucleotide polymorphisms in a Han Chinese population with a genotyping chip.

作者信息

Liu Chin-Hung, Peck Konan, Huang Jin-Ding, Lin Min-Shung, Wang Chin-Hsiung, Hsu Wen-Pin, Wang Hong-Wen, Lee Hui-Ling, Lai Ming-Liang

机构信息

Institute of Basic Medical Sciences, National Cheng Kung University, College of Medicine, Tainan, Taiwan.

出版信息

Pharmacogenomics. 2005 Oct;6(7):731-47. doi: 10.2217/14622416.6.7.731.

Abstract

Human cytochrome P450 (CYP)3A is a major P450 enzyme found in the liver and gastrointestinal tract. It plays an important role in the metabolism of a wide variety of drugs, some endogenous steroids and harmful environmental contaminants. It has been shown that CYP3A alleles encoding enzymes with little or no activity are largely created by single nucleotide polymorphisms (SNPs) in the sequences of these genes. The most prevalent of these SNPs are often of low allelic frequency, and many are specific to certain ethnic groups. Therefore, an accurate determination of their frequency in any given ethnic population requires investigations involving large sample sizes. A genotyping chip with enzyme-colorimetric detection was developed and used for simultaneous analysis of 22 known CYP3A SNPs in 451 Han Chinese subjects. Following multiplex polymerase chain reaction and allele-specific primer extension labeling, an enzymatic colorimetry detection system was employed to visualize genotype patterns on a nylon membrane. With this robust system, accurate discrimination ratios were obtained, and approximately 9,922 genotypes were determined. We found that the major CYP3A SNPs in the Chinese subjects were CYP3A44 (allele frequency 2.4%), CYP3A45 (0.7%), CYP3A418A (2.7%) and CYP3A53C (70.2%). Most of the major CYP3A4 SNPs found in other ethnicities were not found in this study. Using these SNPs, 11 haplotypes were identified. Comparison between present and previous studies shows that CYP3A44 and CYP3A45 alleles were Chinese-specific. The genotyping chip developed in this study is an efficient, economic and accurate system for screening multiple SNPs in a large population. Application of such technology is expected to be less labor intensive and easier to adapt to specific searches when compared with other methodologies.

摘要

人类细胞色素P450(CYP)3A是一种主要的P450酶,存在于肝脏和胃肠道中。它在多种药物、一些内源性类固醇和有害环境污染物的代谢中发挥重要作用。研究表明,编码活性很低或无活性酶的CYP3A等位基因很大程度上是由这些基因序列中的单核苷酸多态性(SNP)产生的。这些SNP中最常见的往往等位基因频率较低,而且许多是特定于某些种族群体的。因此,要准确确定其在任何特定种族人群中的频率,需要进行涉及大样本量的调查。开发了一种具有酶比色检测功能的基因分型芯片,并用于对451名汉族受试者中的22个已知CYP3A SNP进行同步分析。在多重聚合酶链反应和等位基因特异性引物延伸标记之后,采用酶比色检测系统在尼龙膜上可视化基因型模式。利用这个强大的系统,获得了准确的判别率,并确定了大约9922种基因型。我们发现,中国受试者中的主要CYP3A SNP为CYP3A44(等位基因频率2.4%)、CYP3A45(0.7%)、CYP3A418A(2.7%)和CYP3A53C(70.2%)。本研究未发现其他种族中发现的大多数主要CYP3A4 SNP。利用这些SNP,鉴定出11种单倍型。当前研究与以往研究的比较表明,CYP3A44和CYP3A45等位基因是中国特有的。本研究开发的基因分型芯片是一种用于在大群体中筛选多个SNP的高效、经济且准确的系统。与其他方法相比,预计这种技术的应用所需劳动力较少,并且更容易适应特定的搜索。

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