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一种在非洲黑人人群中常见的新型CYP2D6基因突变体(CYP2D6*17):与异喹胍羟化酶活性降低相关。

A novel mutant variant of the CYP2D6 gene (CYP2D6*17) common in a black African population: association with diminished debrisoquine hydroxylase activity.

作者信息

Masimirembwa C, Persson I, Bertilsson L, Hasler J, Ingelman-Sundberg M

机构信息

Department of Medical Biochemistry and Biophysics, Karolinska Institutet, Stockholm, Sweden.

出版信息

Br J Clin Pharmacol. 1996 Dec;42(6):713-9. doi: 10.1046/j.1365-2125.1996.00489.x.

Abstract
  1. The debrisoquine hydroxylase (CYP2D6) is polymorphically distributed. Not only are there differences in the proportions of extensive metabolisers to poor metabolisers in various ethnic groups, but there are also pronounced variations in the metabolic capacity among those classified as extensive metabolisers. 2. The mean debrisoquine metabolic ratio of Caucasian extensive metabolisers is lower than that for a number of African populations. In the present study, we have searched for novel CYP2D6 mutations to explain the diminished enzyme activity in African populations. 3. Three Zimbabwean Shona subjects with EM phenotypes (metabolic ratios for debrisoquine of 0.4, 1.5 and 10.5 respectively) were selected and the open reading frame of the CYP2D6 gene of each was sequenced. 4. The subject with metabolic ratio of 10.5 was found to be homozygous for an allele with a nucleotide exchange in exon 2, 1111C-->T causing a 107Thr-->Ile amino acid exchange in a conserved region of the enzyme. In addition, he was homozygous for the 2938C-->T and 4268G-->C mutations causing 296Arg-->Ser and 486Ser-->Thr amino acid substitution found in the CYP2D62 allele. 5. Seventy-six Zimbabwean Shona subjects were subsequently genotyped for the 1111C-->T mutation and for the intron 1 gene conversion present in the CYP2D62 gene. The 1111C-->T mutation was found at an allele frequency of 34% and was only present in alleles carrying the gene conversion in intron 1 indicative for the CYP2D62 gene. 6. This allele (CYP2D617), containing the 1111C-->T, 2938C-->T and 4268G-->C mutations, was found to be strongly associated with lower capacity for debrisoquine hydroxylation. We therefore postulate that the CYP2D6*17 allele might contribute to the molecular basis of the previously established diminished debrisoquine hydroxylase activity in African Bantu populations.
摘要
  1. 异喹胍羟化酶(CYP2D6)呈多态性分布。不仅不同种族中快代谢者与慢代谢者的比例存在差异,而且在被归类为快代谢者的人群中,其代谢能力也有显著变化。2. 白种人快代谢者的异喹胍平均代谢率低于一些非洲人群。在本研究中,我们寻找新的CYP2D6突变以解释非洲人群中酶活性降低的原因。3. 选择了三名具有快代谢表型(异喹胍代谢率分别为0.4、1.5和10.5)的津巴布韦绍纳族受试者,并对每个人的CYP2D6基因开放阅读框进行测序。4. 代谢率为10.5的受试者被发现对于一个在外显子2中发生核苷酸交换(1111C→T)的等位基因是纯合的,该交换导致酶保守区域中的第107位苏氨酸→异亮氨酸氨基酸交换。此外,他对于在CYP2D62等位基因中发现的导致第296位精氨酸→丝氨酸和第486位丝氨酸→苏氨酸氨基酸替换的2938C→T和4268G→C突变也是纯合的。5. 随后对76名津巴布韦绍纳族受试者进行了1111C→T突变以及CYP2D62基因中存在的内含子1基因转换的基因分型。发现1111C→T突变的等位基因频率为34%,且仅存在于携带内含子1中指示CYP2D62基因的基因转换的等位基因中。6. 发现这个包含1111C→T、2938C→T和4268G→C突变的等位基因(CYP2D617)与异喹胍羟化能力降低密切相关。因此我们推测CYP2D6*17等位基因可能是先前确定的非洲班图人群中异喹胍羟化酶活性降低的分子基础。

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