The effect of aging on the DNA damage and repair capacity in 2BS cells undergoing oxidative stress

被引:0
作者
Jin-Ling Wang
Pei-Chang Wang
机构
[1] Capital Medical University,Department of Clinical Laboratory, Xuanwu Hospital
关键词
2BS cells; Oxidative stress; Comet assay; DNA repair; DNA polymerase δ1;
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摘要
Aging is associated with a reduction in the DNA repair capacity under oxidative stress. However, whether the DNA damage and repair capacity can be a biomarker of aging remains controversial. In this study, we demonstrated two cause-and-effect relationships, the one is between the DNA damage and repair capacity and the cellular age, another is between DNA damage and repair capacity and the level of oxidative stress in human embryonic lung fibroblasts (2BS) exposed to different doses of hydrogen peroxide (H2O2). To clarify the mechanisms of the age-related reduction in DNA damage and repair capacity, we preliminarily evaluated the expressions of six kinds of pivotal enzymes involved in the two classical DNA repair pathways. The DNA repair capacity was observed in human fibroblasts cells using the comet assay; the age-related DNA repair enzymes were selected by RT-PCR and then verified by Western blot in vitro. Results showed that the DNA repair capacity was negatively and linearly correlated with (i) cumulative population doubling (PD) levels only in the group of low concentration of hydrogen peroxide treatment, (ii) with the level of oxidative stress only in the group of young PD cells. The mRNA expression of DNA polymerase δ1 decreased substantially in senescent cells and showed negative linear-correlation with PD levels; the protein expression level was well consistent with the mRNA level. Taken together, DNA damage and repair capacity can be a biomarker of aging. Reduced expression of DNA polymerase δ1 may be responsible for the decrease of DNA repair capacity in senescent cells.
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页码:233 / 241
页数:8
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共 71 条
[1]  
Gilca M(2007)The oxidative hypothesis of senescence Postgrad Med 53 207-221
[2]  
Stoian I(1995)Oxidative DNA damage and senescence of human diploid fibroblast cells Proc Natl Acad Sci 92 4337-4341
[3]  
Atanasiu V(2000)Single cell gel/comet assay: guidelines for in vitro and in vivo genetic toxicology testing Environ Mol Mutagen 35 206-221
[4]  
Chen Q(2008)The comet assay: topical issues Mutagenesis 23 143-151
[5]  
Fischer A(2011)Measuring oxidative DNA damage and DNA repair using the yest comet assay Yeast 28 55-61
[6]  
Reagan JD(2002)Oxidative DNA damage as a marker of aging in WI-38 human fibroblasts Exp Gerontol 37 647-656
[7]  
Tice RR(2005)Irreversible cellular senescence induced by prolonged exposure to H Int J Biochem Cell Biol 37 1407-1420
[8]  
Agurell E(2004)O Exp Gerontol 39 415-421
[9]  
Anderson D(2002) involves DNA-damage-and-repair genes and telomere shortening Sheng Li Ke Xue Jin Zhan (Chin) 33 65-68
[10]  
Collins AR(2006)mRNA level of alpha-2-macroglobulin as an aging biomarker of human fibroblasts in culture Exp Gerontol 41 1243-1246