DNA damage by bromate: Mechanism and consequences

被引:69
作者
Ballmaier, D [1 ]
Epe, B [1 ]
机构
[1] Johannes Gutenberg Univ Mainz, Inst Pharm, D-55099 Mainz, Germany
关键词
bromate; hypochlorite; genotoxicity; oxidative DNA damage; glutathione;
D O I
10.1016/j.tox.2006.01.009
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Exposure of mammalian cells to bromate (BrO3-) generates oxidative DNA modifications, in particular 7,8-dihydro-8-oxoguanine (8-oxoG). The damaging mechanism is quite unique, since glutathione, which is protective against most oxidants and alkylating agents, mediates a metabolic activation, while bromate itself does not react directly with DNA. Neither enzymes nor transition metals are required as catalysts in the activation. The ultimate DNA damaging species has not yet been established, but experiments under cell-free conditions suggest that neither molecular bromine nor reactive oxygen species such as superoxide, hydrogen peroxide or singlet oxygen are involved. Rather bromine radicals (Br-center dot) or oxides (BrO center dot, BrO2 center dot) might be responsible. Compared to hypochlorite (ClO-), bromate is much less cytotoxic, probably because the former halite efficiently reacts with proteins and other vitally important cellular constituents. In consequence, oxidative DNA damage and the induction of mutations and micronuclei is easily detectable at non-cytotoxic concentrations of bromate, while DNA damage by hypochlorite is observed only at cytotoxic concentrations and follows a non-linear (hockey-stick-like) dose response. (c) 2006 Aww Research Foundation. Published by Elsevier Ireland Ltd. All rights reserved.
引用
收藏
页码:166 / 171
页数:6
相关论文
共 19 条
[1]  
Arai T, 2003, CANCER RES, V63, P4287
[2]   High accumulation of oxidative DNA damage, 8-hydroxyguanine, in Mmh/Ogg1 deficient mice by chronic oxidative stress [J].
Arai, T ;
Kelly, VP ;
Minowa, O ;
Noda, T ;
Nishimura, S .
CARCINOGENESIS, 2002, 23 (12) :2005-2010
[3]   OXIDATIVE DNA-DAMAGE INDUCED BY POTASSIUM BROMATE UNDER CELL-FREE CONDITIONS AND IN MAMMALIAN-CELLS [J].
BALLMAIER, D ;
EPE, B .
CARCINOGENESIS, 1995, 16 (02) :335-342
[4]   Carcinogenicity of potassium bromate administered in the drinking water to male B6C3F1 mice and F344/N rats [J].
DeAngelo, AB ;
George, MH ;
Kilburn, SR ;
Moore, TM ;
Wolf, DC .
TOXICOLOGIC PATHOLOGY, 1998, 26 (05) :587-594
[5]  
EPE B, 1994, METHOD ENZYMOL, V234, P122
[6]   Comparative evaluation of the genotoxic properties of potassium bromate and potassium superoxide in V79 Chinese hamster cells [J].
Günter, S ;
Haupter, S ;
Schütz, P ;
Kreis, P .
MUTATION RESEARCH-GENETIC TOXICOLOGY AND ENVIRONMENTAL MUTAGENESIS, 1999, 439 (02) :213-221
[7]   Bromate induces loss of heterozygosity in the Thymidine kinase gene of L5178Y/Tk+/--3.7.2C mouse lymphoma cells [J].
Harrington-Brock, K ;
Collard, DD ;
Chen, T .
MUTATION RESEARCH-GENETIC TOXICOLOGY AND ENVIRONMENTAL MUTAGENESIS, 2003, 537 (01) :21-28
[8]   PRIMARY MUTAGENICITY SCREENING OF FOOD-ADDITIVES CURRENTLY USED IN JAPAN [J].
ISHIDATE, M ;
SOFUNI, T ;
YOSHIKAWA, K ;
HAYASHI, M ;
NOHMI, T ;
SAWADA, M ;
MATSUOKA, A .
FOOD AND CHEMICAL TOXICOLOGY, 1984, 22 (08) :623-636
[9]   FRACTIONATION OF DNA FROM MAMMALIAN-CELLS BY ALKALINE ELUTION [J].
KOHN, KW ;
ERICKSON, LC ;
EWIG, RAG ;
FRIEDMAN, CA .
BIOCHEMISTRY, 1976, 15 (21) :4629-4637
[10]  
KUROKAWA Y, 1986, J NATL CANCER I, V77, P977