Role of oxidative stress in telomere shortening in cultured fibroblasts from normal individuals and patients with ataxia-telangiectasia

被引:109
作者
Tchirkov, A
Lansdorp, PM
机构
[1] British Columbia Canc Agcy, Terry Fox Lab, Vancouver, BC V5Z 1L3, Canada
[2] Univ British Columbia, Dept Med, Vancouver, BC V5Z 4E3, Canada
关键词
D O I
10.1093/hmg/ddg023
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Cells from patients with the autosomal recessive disorder ataxia-telangiectasia (A-T) display accelerated telomere shortening upon culture in vitro. It has been suggested that A-T cells are in a chronic state of oxidative stress, which could contribute to their enhanced telomere shortening. In order to examine this hypothesis, we monitored the changes in telomere length in A-T homozygous, heterozygous and control fibroblasts cultured in vitro under various conditions of oxidative stress using quantitative fluorescent in situ hybridization. Compared with normal cells, the rate of telomere shortening was 1.5-fold increased under 'normal' levels of oxidative stress in A-T heterozygous cells and 2.4-3.2-fold in A-T homozygous cells. Mild chronic oxidative stress induced by hydrogen peroxide increased the rate of telomere shortening in A-T cells but not in normal fibroblasts and the telomere shortening rate decreased in both normal and A-T fibroblasts if cultures were supplemented with the anti-oxidant phenyl-butyl-nitrone. Increased telomere shortening upon oxidative stress in A-T cells was associated with a significant increase in the number of extra-chromosomal fragments of telomeric DNA and chromosome ends without detectable telomere repeats. We propose that the ATM (A-T mutated) protein has a role in the prevention or repair of oxidative damage to telomeric DNA and that enhanced sensitivity of telomeric DNA to oxidative damage in A-T cells results in accelerated telomere shortening and chromosomal instability.
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页码:227 / 232
页数:6
相关论文
共 28 条
[21]   Replicative aging, telomeres, and oxidative stress [J].
Saretzki, G ;
Von Zglinicki, T .
INCREASING HEALTHY LIFE SPAN: CONVENTIONAL MEASURES AND SLOWING THE INNATE AGING PROCESS, 2002, 959 :24-29
[22]   A SINGLE ATAXIA-TELANGIECTASIA GENE WITH A PRODUCT SIMILAR TO PI-3 KINASE [J].
SAVITSKY, K ;
BARSHIRA, A ;
GILAD, S ;
ROTMAN, G ;
ZIV, Y ;
VANAGAITE, L ;
TAGLE, DA ;
SMITH, S ;
UZIEL, T ;
SFEZ, S ;
ASHKENAZI, M ;
PECKER, I ;
FRYDMAN, M ;
HARNIK, R ;
PATANJALI, SR ;
SIMMONS, A ;
CLINES, GA ;
SARTIEL, A ;
GATTI, RA ;
CHESSA, L ;
SANAL, O ;
LAVIN, MF ;
JASPERS, NGJ ;
MALCOLM, A ;
TAYLOR, R ;
ARLETT, CF ;
MIKI, T ;
WEISSMAN, SM ;
LOVETT, M ;
COLLINS, FS ;
SHILOH, Y .
SCIENCE, 1995, 268 (5218) :1749-1753
[23]  
Sedgwick RP, 1991, HDB CLIN NEUROLOGY, V16, P347
[24]   Accelerated telomere shortening in flbroblasts after extended periods of confluency [J].
Sitte, N ;
Saretzki, G ;
Von Zglinicki, T .
FREE RADICAL BIOLOGY AND MEDICINE, 1998, 24 (06) :885-893
[25]   ATM-dependent telomere loss in aging human diploid fibroblasts and DNA damage lead to the post-translational activation of p53 protein involving poly(ADP-ribose) polymerase [J].
Vaziri, H ;
West, MD ;
Allsopp, RC ;
Davison, TS ;
Wu, YS ;
Arrowsmith, CH ;
Poirier, GG ;
Benchimol, S .
EMBO JOURNAL, 1997, 16 (19) :6018-6033
[26]   Accumulation of single-strand breaks is the major cause of telomere shortening in human fibroblasts [J].
Von Zglinicki, T ;
Pilger, R ;
Sitte, N .
FREE RADICAL BIOLOGY AND MEDICINE, 2000, 28 (01) :64-74
[27]   MILD HYPEROXIA SHORTENS TELOMERES AND INHIBITS PROLIFERATION OF FIBROBLASTS - A MODEL FOR SENESCENCE [J].
VONZGLINICKI, T ;
SARETZKI, G ;
DOCKE, W ;
LOTZE, C .
EXPERIMENTAL CELL RESEARCH, 1995, 220 (01) :186-193
[28]   Reduced telomere length in ataxia-telangiectasia fibroblasts [J].
Xia, SJJ ;
Shammas, MA ;
Reis, RJS .
MUTATION RESEARCH-DNA REPAIR, 1996, 364 (01) :1-11