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16种重组人NAT2同工酶对N-羟基芳胺和N-羟基芳酰胺的代谢激活作用:7种特定NAT2核酸替代的影响

Metabolic activation of N-hydroxyarylamines and N-hydroxyarylamides by 16 recombinant human NAT2 allozymes: effects of 7 specific NAT2 nucleic acid substitutions.

作者信息

Hein D W, Doll M A, Rustan T D, Ferguson R J

机构信息

Department of Pharmacology and Toxicology, University of North Dakota School of Medicine, Grand Forks 58202-9037, USA.

出版信息

Cancer Res. 1995 Aug 15;55(16):3531-6.

PMID:7627960
Abstract

Human polymorphic N-acetyltransferase (NAT2) catalyzes the N-acetylation of arylamine carcinogens and the metabolic activation of N-hydroxyarylamine and N-hydroxyarylamide carcinogens by O- and N,O-acetylation, respectively. Rapid and slow acetylator phenotype is regulated at the NAT2 locus, and each has been associated with differential risk to certain cancers relating to carcinogenic arylamine exposures. We examined arylamine N-acetylation, N-hydroxyarylamine O-acetylation, and N-hydroxyarylamide N,O-acetylation catalytic activities of 16 different recombinant human NAT2 alleles expressed in an Escherichia coli JM105 expression system. NAT2 alleles contained nucleic acid substitutions at G191A (Arg64-->Gln), C282T (silent), T341C (Ile114-->Thr), C481T (silent), G590A (Arg197-->Gln), A803G (Lys268-->Arg), G857A (Gly286-->Glu), and various combinations of substitutions in the 870-bp NAT2-coding region. Expression of each NAT2 allele produced equivalent amounts of immunoreactive recombinant NAT2 protein with differential levels of N-, O-, and N,O-acetylation activity. Catalytic activities of each of the recombinant human NAT2 allozymes followed the relative order N-acetylation > O-acetylation > N,O-acetylation. Catalytic activation rates for the metabolic activation of N-hydroxy-2-aminofluorene and N-hydroxy-4-aminobiphenyl by O-acetylation and N-hydroxy-2-acetylaminofluorene by N,O-acetylation showed very strong correlations to the N-acetylation of 2-aminofluorene. NAT2 alleles with nucleic acid substitution T341C (NAT2*5A,*5B,5C) expressed recombinant NAT2 allozymes, with the greatest reductions in metabolic activation of N-hydroxyarylamines and N-hydroxyarylamides by O- and N,O-acetylation, respectively. NAT2 alleles with nucleic acid substitutions G191A (NAT214A,14B) and G590A (NAT26A,6B) expressed recombinant NAT2 allozymes with more moderate reductions. NAT2 alleles with nucleic acid substitution G857A (NAT27A,*7B) expressed recombinant NAT2 allozymes with the smallest but yet significant reductions. NAT2 alleles with nucleic acid substitutions C282T (silent), C481T (silent), and A803G (Lys268-->Arg) expressed recombinant NAT2 allozymes that did not have significant reductions in the metabolic activations of N-hydroxyarylamines and N-hydroxyarylamides. The differential capacity for the metabolic activation of N-hydroxyarylamines and N-hydroxyarylamides by recombinant human NAT2 allozymes encoded by polymorphic NAT2 alleles supports the hypothesis that acetylator phenotype may predispose to cancers related to activation of N-hydroxy-arylamine and N-hydroxyarylamide carcinogens.

摘要

人类多态性N - 乙酰基转移酶(NAT2)催化芳胺致癌物的N - 乙酰化反应,并分别通过O - 乙酰化和N,O - 乙酰化反应催化N - 羟基芳胺和N - 羟基芳酰胺致癌物的代谢活化。快速和慢速乙酰化酶表型在NAT2基因座处受到调控,并且每种表型都与因接触致癌芳胺而患某些癌症的不同风险相关。我们检测了在大肠杆菌JM105表达系统中表达的16种不同重组人NAT2等位基因的芳胺N - 乙酰化、N - 羟基芳胺O - 乙酰化和N - 羟基芳酰胺N,O - 乙酰化催化活性。NAT2等位基因在G191A(Arg64→Gln)、C282T(沉默)、T341C(Ile114→Thr)、C481T(沉默)、G590A(Arg197→Gln)、A803G(Lys268→Arg)、G857A(Gly286→Glu)处存在核酸替换,以及在870 bp的NAT2编码区域存在各种替换组合。每个NAT2等位基因的表达产生了等量的免疫反应性重组NAT2蛋白,但N - 、O - 和N,O - 乙酰化活性水平不同。每种重组人NAT2同工酶的催化活性遵循N - 乙酰化> O - 乙酰化> N,O - 乙酰化的相对顺序。通过O - 乙酰化对N - 羟基 - 2 - 氨基芴和N - 羟基 - 4 - 氨基联苯进行代谢活化以及通过N,O - 乙酰化对N - 羟基 - 2 - 乙酰氨基芴进行代谢活化的催化活化率与2 - 氨基芴的N - 乙酰化显示出非常强的相关性。具有核酸替换T341C(NAT2 * 5A、* 5B、* 5C)的NAT2等位基因表达的重组NAT2同工酶,分别在通过O - 乙酰化和N,O - 乙酰化对N - 羟基芳胺和N - 羟基芳酰胺的代谢活化中表现出最大程度的降低。具有核酸替换G191A(NAT2 * 14A、* 14B)和G590A(NAT2 * 6A、* 6B)的NAT2等位基因表达的重组NAT2同工酶,其降低程度较为适中。具有核酸替换G857A(NAT2 * 7A、* 7B)的NAT2等位基因表达的重组NAT2同工酶,其降低程度最小但仍很显著。具有核酸替换C282T(沉默)、C481T(沉默)和A803G(Lys268→Arg)的NAT2等位基因表达的重组NAT2同工酶,在N - 羟基芳胺和N - 羟基芳酰胺的代谢活化中没有显著降低。由多态性NAT2等位基因编码的重组人NAT2同工酶对N - 羟基芳胺和N - 羟基芳酰胺的代谢活化能力差异支持了乙酰化酶表型可能使个体易患与N - 羟基芳胺和N - 羟基芳酰胺致癌物活化相关癌症的假说。

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