早衰
DNA修复
DNA损伤
沃纳综合征
生物
Cockayne综合征
核苷酸切除修复
基因组不稳定性
解旋酶
遗传学
细胞生物学
基因
抄写(语言学)
DNA
癌症研究
核糖核酸
语言学
哲学
作者
Jan de Boer,Jaan‐Olle Andressoo,Jan de Wit,J. G. M. Huijmans,Rudolph B. Beems,Harry van Steeg,Geert Weeda,Gijsbertus T. J. van der Horst,Wibeke van Leeuwen,Axel P. N. Themmen,M. Meradji,Jan H.J. Hoeijmakers
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2002-05-17
卷期号:296 (5571): 1276-1279
被引量:539
标识
DOI:10.1126/science.1070174
摘要
One of the factors postulated to drive the aging process is the accumulation of DNA damage. Here, we provide strong support for this hypothesis by describing studies of mice with a mutation in XPD, a gene encoding a DNA helicase that functions in both repair and transcription and that is mutated in the human disorder trichothiodystrophy (TTD). TTD mice were found to exhibit many symptoms of premature aging, including osteoporosis and kyphosis, osteosclerosis, early greying, cachexia, infertility, and reduced life-span. TTD mice carrying an additional mutation in XPA, which enhances the DNA repair defect, showed a greatly accelerated aging phenotype, which correlated with an increased cellular sensitivity to oxidative DNA damage. We hypothesize that aging in TTD mice is caused by unrepaired DNA damage that compromises transcription, leading to functional inactivation of critical genes and enhanced apoptosis.
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