Literature DB >> 7627960

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

D W Hein1, M A Doll, T D Rustan, R J Ferguson.   

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 (NAT2*14A,*14B) and G590A (NAT2*6A,*6B) expressed recombinant NAT2 allozymes with more moderate reductions. NAT2 alleles with nucleic acid substitution G857A (NAT2*7A,*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.

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Year:  1995        PMID: 7627960

Source DB:  PubMed          Journal:  Cancer Res        ISSN: 0008-5472            Impact factor:   12.701


  36 in total

Review 1.  Genes other than BRCA1 and BRCA2 involved in breast cancer susceptibility.

Authors:  M M de Jong; I M Nolte; G J te Meerman; W T A van der Graaf; J C Oosterwijk; J H Kleibeuker; M Schaapveld; E G E de Vries
Journal:  J Med Genet       Date:  2002-04       Impact factor: 6.318

2.  NAT2 variants are associated with drug-induced liver injury caused by anti-tuberculosis drugs in Indonesian patients with tuberculosis.

Authors:  Rika Yuliwulandari; Retno Wilujeng Susilowati; Britanto Dani Wicaksono; Kencono Viyati; Kinasih Prayuni; Intan Razari; Erna Kristin; Eva Sri Diana; Suci Setiawati; Aziza Ariyani; Surakameth Mahasirimongkol; Hideki Yanai; Taisei Mushiroda; Katsushi Tokunaga
Journal:  J Hum Genet       Date:  2016-02-25       Impact factor: 3.172

3.  Catalytic properties and heat stabilities of novel recombinant human N-acetyltransferase 2 allozymes support existence of genetic heterogeneity within the slow acetylator phenotype.

Authors:  David W Hein; Mark A Doll
Journal:  Arch Toxicol       Date:  2017-05-18       Impact factor: 5.153

4.  Study of NAT2 genetic polymorphism in West African subjects: example of an healthy non-smoker Senegalese population.

Authors:  A Touré; C Diop; M Cabral; M Fall; M Lhermitte; A Diouf; F Broly; D Allorge
Journal:  Mol Biol Rep       Date:  2012-10-07       Impact factor: 2.316

5.  Codominant expression of N-acetylation and O-acetylation activities catalyzed by N-acetyltransferase 2 in human hepatocytes.

Authors:  Mark A Doll; Yu Zang; Timothy Moeller; David W Hein
Journal:  J Pharmacol Exp Ther       Date:  2010-04-29       Impact factor: 4.030

6.  Role of the N-acetylation polymorphism in solithromycin metabolism.

Authors:  David W Hein; Mark A Doll
Journal:  Pharmacogenomics       Date:  2017-04-24       Impact factor: 2.533

Review 7.  Hepatotoxicity Related to Anti-tuberculosis Drugs: Mechanisms and Management.

Authors:  Vidyasagar Ramappa; Guruprasad P Aithal
Journal:  J Clin Exp Hepatol       Date:  2012-12-20

8.  Genetic heterogeneity among slow acetylator N-acetyltransferase 2 phenotypes in cryopreserved human hepatocytes.

Authors:  Mark A Doll; David W Hein
Journal:  Arch Toxicol       Date:  2017-05-17       Impact factor: 5.153

9.  Effects of dietary factors and the NAT2 acetylator status on gastric cancer in Koreans.

Authors:  Yan Wei Zhang; Sang-Yong Eom; Yong-Dae Kim; Young-Jin Song; Hyo-Yung Yun; Joo-Seung Park; Sei-Jin Youn; Byung Sik Kim; Heon Kim; David W Hein
Journal:  Int J Cancer       Date:  2009-07-01       Impact factor: 7.396

10.  N-acetyltransferase 2 genotype modification of active cigarette smoking on breast cancer risk among hispanic and non-hispanic white women.

Authors:  Kathy B Baumgartner; Thomas J Schlierf; Dongyan Yang; Mark A Doll; David W Hein
Journal:  Toxicol Sci       Date:  2009-08-19       Impact factor: 4.849

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