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人类芳基胺N-乙酰基转移酶1(NAT1)基因分型:两种新型等位基因变体的鉴定。

Genotyping human arylamine N-acetyltransferase type 1 (NAT1): the identification of two novel allelic variants.

作者信息

Payton M A, Sim E

机构信息

Department of Pharmacology, University of Oxford, UK.

出版信息

Biochem Pharmacol. 1998 Feb 1;55(3):361-6. doi: 10.1016/s0006-2952(97)00478-4.

Abstract

Human arylamine N-acetyltransferase (NAT) is known to exist as two isoenzymes, NAT1 and NAT2, with different though overlapping substrate specificities. NAT1 and NAT2 are polymorphic at both genetic and phenotypic levels with four distinct alleles described in Caucasians for NAT1. Though clear genotype/phenotype associations exist for NAT2, the same remains unclear for NAT1. Whole blood taken from 32 individuals were NAT1 genotyped and compared to previously obtained NAT1 activities using p-aminobenzoic acid as a substrate. The NAT1 alleles of one individual, who had low NAT1 activity, were sequenced and compared to the wild type allele NAT1*4. A novel, non-conservative, substitution was present in both alleles at nucleotide position 560 and results in the exchange of an arginine for a glutamine at amino acid position 187. A glutamine is found in NAT2 at amino acid position 187 and has been implicated in substrate binding. This report describes a simple and effective genotyping method which detects the four previously reported NAT1 polymorphisms, and the described novel low acetylating polymorphism, by either NAT1 allele specific-PCR amplification or restriction fragment length polymorphism analysis of PCR amplified products. We suggest that NAT1 genotype/phenotype correlations will become more clear as further allelic variants are determined.

摘要

已知人类芳胺N - 乙酰基转移酶(NAT)以两种同工酶NAT1和NAT2的形式存在,它们的底物特异性虽有重叠但各不相同。NAT1和NAT2在基因和表型水平上均具有多态性,在白种人中已描述了NAT1的四个不同等位基因。虽然NAT2存在明确的基因型/表型关联,但NAT1的情况仍不清楚。采集了32名个体的全血进行NAT1基因分型,并将其与先前使用对氨基苯甲酸作为底物获得的NAT1活性进行比较。对一名NAT1活性较低个体的NAT1等位基因进行测序,并与野生型等位基因NAT1*4进行比较。在两个等位基因的核苷酸位置560处均存在一种新的、非保守的替换,导致氨基酸位置187处的精氨酸被谷氨酰胺替换。在NAT2的氨基酸位置187处发现有谷氨酰胺,并且它与底物结合有关。本报告描述了一种简单有效的基因分型方法,该方法通过NAT1等位基因特异性PCR扩增或PCR扩增产物的限制性片段长度多态性分析,检测先前报道的四种NAT1多态性以及所描述的新型低乙酰化多态性。我们认为,随着更多等位基因变体的确定,NAT1基因型/表型的相关性将变得更加清晰。

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