The accumulation of stochastic DNA damage throughout an organism's lifespan is thought to contribute to ageing. Conversely, ageing seems to be phenotypically reproducible and regulated through genetic pathways such as the insulin-like growth factor-1 (IGF-1) and growth hormone (GH) receptors, which are central mediators of the somatic growth axis. Here we report that persistent DNA damage in primary cells from mice elicits changes in global gene expression similar to those occurring in various organs of naturally aged animals. We show that, as in ageing animals, the expression of IGF-1 receptor and GH receptor is attenuated, resulting in cellular resistance to IGF-1. This cell-autonomous attenuation is specifically induced by persistent lesions leading to stalling of RNA polymerase II in proliferating, quiescent and terminally differentiated cells; it is exacerbated and prolonged in cells from progeroid mice and confers resistance to oxidative stress. Our findings suggest that the accumulation of DNA damage in transcribed genes in most if not all tissues contributes to the ageing-associated shift from growth to somatic maintenance that triggers stress resistance and is thought to promote longevity.
Persistent transcription-blocking DNA lesions trigger somatic growth attenuation associated with longevity.
持续存在的转录阻断性DNA损伤会引发与长寿相关的体细胞生长减弱
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作者:Garinis George A, Uittenboogaard Lieneke M, Stachelscheid Heike, Fousteri Maria, van Ijcken Wilfred, Breit Timo M, van Steeg Harry, Mullenders Leon H F, van der Horst Gijsbertus T J, Brüning Jens C, Niessen Carien M, Hoeijmakers Jan H J, Schumacher Björn
| 期刊: | Nature Cell Biology | 影响因子: | 19.100 |
| 时间: | 2009 | 起止号: | 2009 May;11(5):604-15 |
| doi: | 10.1038/ncb1866 | 研究方向: | 细胞生物学 |
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