Although DNA damage is considered a driving force for aging, the nature of the damage that arises endogenously remains unclear. Replicative stress, a source of endogenous DNA damage, is prevented primarily by the ATR kinase. We have developed a mouse model of Seckel syndrome characterized by a severe deficiency in ATR. Seckel mice show high levels of replicative stress during embryogenesis, when proliferation is widespread, but this is reduced to marginal amounts in postnatal life. In spite of this decrease, adult Seckel mice show accelerated aging, which is further aggravated in the absence of p53. Together, these results support a model whereby replicative stress, particularly in utero, contributes to the onset of aging in postnatal life, and this is balanced by the replicative stress-limiting role of the checkpoint proteins ATR and p53.
A mouse model of ATR-Seckel shows embryonic replicative stress and accelerated aging.
ATR-Seckel 小鼠模型表现出胚胎复制压力和加速衰老
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作者:Murga Matilde, Bunting Samuel, Montaña Maria F, Soria Rebeca, Mulero Francisca, Cañamero Marta, Lee Youngsoo, McKinnon Peter J, Nussenzweig Andre, Fernandez-Capetillo Oscar
| 期刊: | Nature Genetics | 影响因子: | 29.000 |
| 时间: | 2009 | 起止号: | 2009 Aug;41(8):891-8 |
| doi: | 10.1038/ng.420 | 种属: | Mouse |
| 研究方向: | 发育与干细胞 | ||
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