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细胞色素P450-异喹胍羟化酶基因座的分子遗传学分析及其与癌症易感性的关联。

Molecular genetic analysis of the cytochrome P450-debrisoquine hydroxylase locus and association with cancer susceptibility.

作者信息

Smith C A, Moss J E, Gough A C, Spurr N K, Wolf C R

机构信息

ICRF Molecular Pharmacology Group, University of Edinburgh, United Kingdom.

出版信息

Environ Health Perspect. 1992 Nov;98:107-12. doi: 10.1289/ehp.9298107.

Abstract

The cytochrome P450-dependent monooxygenases play a central role in the metabolism of chemical carcinogens. The action of these enzymes can lead to either carcinogen detoxication or activation. Differences in P450 expression in animal models give rise to large differences in susceptibility to chemical carcinogens, so genetic polymorphisms in P450 expression may be expected to be an important factor in individual human susceptibility to cancer. Of particular interest is the genetic polymorphism at the cytochrome P450-debrisoquine/sparteine hydroxylase locus (CYP2D6). Although this is a minor liver P450, its polymorphic expression is associated with the abnormal metabolism of at least 30 therapeutic drugs, including beta-blockers and tricyclic antidepressants. Conflicting reports have been made on the association of this polymorphism with cancer susceptibility. This disagreement may be attributable to limitations of the phenotyping assay used to identify affected individuals (poor metabolizers, PMs). In order to clarify these anomalies, we have developed a simple DNA-based assay with which we can identify the majority of PMs. The assay is centered around the primary gene defect responsible for the polymorphism, a G to A transition at the junction of intron 3/exon 4 which results in a frame-shift in the resultant mRNA. The frequency of this mutation is 70-80% in PMs. We have studied the frequency of mutated alleles in a control population and in a wide range of cancer patients. No association between this polymorphism and lung cancer susceptibility was observed; however, in other populations of cancer patients some very interesting shifts were found in the proportion of PMs and heterozygotes from that in the normal population.

摘要

细胞色素P450依赖的单加氧酶在化学致癌物的代谢中起核心作用。这些酶的作用可导致致癌物解毒或活化。动物模型中P450表达的差异导致对化学致癌物易感性的巨大差异,因此P450表达的基因多态性可能是个体对癌症易感性的一个重要因素。特别令人感兴趣的是细胞色素P450-异喹胍/鹰爪豆碱羟化酶基因座(CYP2D6)的基因多态性。虽然这是一种次要的肝脏P450,但其多态性表达与至少30种治疗药物的异常代谢有关,包括β受体阻滞剂和三环类抗抑郁药。关于这种多态性与癌症易感性的关联已有相互矛盾的报道。这种分歧可能归因于用于识别受影响个体(慢代谢者,PMs)的表型分析的局限性。为了澄清这些异常情况,我们开发了一种简单的基于DNA的分析方法,通过该方法我们可以识别大多数PMs。该分析围绕导致多态性的主要基因缺陷展开,即内含子3/外显子4交界处的G到A转换,这导致所得mRNA发生移码。这种突变在PMs中的频率为70-80%。我们研究了对照人群和广泛的癌症患者中突变等位基因的频率。未观察到这种多态性与肺癌易感性之间的关联;然而,在其他癌症患者群体中,发现PMs和杂合子的比例与正常人群相比有一些非常有趣的变化。

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Metabolic cytochrome P450 genotypes and assessment of individual susceptibility to lung cancer.
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本文引用的文献

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Absence of hepatic cytochrome P450bufI causes genetically deficient debrisoquine oxidation in man.
Biochemistry. 1988 Jul 26;27(15):5447-54. doi: 10.1021/bi00415a010.
10
Lung cancer and the debrisoquine metabolic phenotype.
J Natl Cancer Inst. 1990 Aug 1;82(15):1264-72. doi: 10.1093/jnci/82.15.1264.

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