Alcohol Metabolism in Human Cells Causes DNA Damage and Activates the Fanconi Anemia-Breast Cancer Susceptibility (FA-BRCA) DNA Damage Response Network

被引:37
作者
Abraham, Jessy [1 ]
Balbo, Silvia [2 ]
Crabb, David [3 ,4 ]
Brooks, Phillip J. [1 ]
机构
[1] NIAAA, Mol Neurobiol Sect, Neurogenet Lab, NIH, Rockville, MD 20852 USA
[2] Univ Minnesota, Mason Canc Ctr, Minneapolis, MN USA
[3] Indiana Univ Sch Med, Dept Med, Div Gastroenterol & Hepatol, Indianapolis, IN USA
[4] Richard L Roudebush Vet Adm Med Ctr, Indianapolis, IN USA
基金
美国国家卫生研究院;
关键词
Acetaldehyde; DNA Adducts; Alcohol Dehydrogenase; Hepatocellular Carcinoma; Breast Cancer; N2-Ethyldeoxyguanosine; ALDEHYDE DEHYDROGENASE; ESOPHAGEAL CANCER; HELA-CELLS; ETHANOL; CARCINOGENESIS; ACETALDEHYDE; PATHWAY; PROTEINS; ADDUCTS; LIVER;
D O I
10.1111/j.1530-0277.2011.01563.x
中图分类号
R194 [卫生标准、卫生检查、医药管理];
学科分类号
摘要
Background: We recently reported that exposure of human cells in vitro to acetaldehyde resulted in the activation of the Fanconi anemiabreast cancer susceptibility (FA-BRCA) DNA damage response network. Methods: To determine whether intracellular generation of acetaldehyde from ethanol metabolism can cause DNA damage and activate the FA-BRCA network, we engineered HeLa cells to metabolize alcohol by expression of human alcohol dehydrogenase (ADH) 1B. Results: Incubation of HeLa-ADH1B cells with ethanol (20 mM) resulted in acetaldehyde accumulation in the media, which was prevented by co-incubation with 4-methyl pyrazole (4-MP), a specific inhibitor of ADH. Ethanol treatment of HeLa-ADH1B cells produced a 4-fold increase in the acetaldehyde-DNA adduct and N 2-ethylidene-dGuo and also resulted in the activation of the FA-BRCA DNA damage response network, as indicated by a monoubiquitination of FANCD2 and phosphorylation of BRCA1. Ser 1524 was identified as 1 site of BRCA1 phosphorylation. The increased levels of DNA adducts, FANCD2 monoubiquitination, and BRCA1 phosphorylation were all blocked by 4-MP, indicating that acetaldehyde, rather than ethanol itself, was responsible for all 3 responses. Importantly, the ethanol concentration we used is within the range that can be attained in the human body during social drinking. Conclusions: Our results indicate that intracellular metabolism of ethanol to acetaldehyde results in DNA damage, which activates the FA-BRCA DNA damage response network.
引用
收藏
页码:2113 / 2120
页数:8
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