首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >DNA damage in stem cells activates p21 inhibits p53 and induces symmetric self-renewing divisions
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DNA damage in stem cells activates p21 inhibits p53 and induces symmetric self-renewing divisions

机译:干细胞中的DNA损伤激活p21抑制p53并诱导对称的自我更新分裂

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摘要

DNA damage leads to a halt in proliferation owing to apoptosis or senescence, which prevents transmission of DNA alterations. This cellular response depends on the tumor suppressor p53 and functions as a powerful barrier to tumor development. Adult stem cells are resistant to DNA damage-induced apoptosis or senescence, however, and how they execute this response and suppress tumorigenesis is unknown. We show that irradiation of hematopoietic and mammary stem cells up-regulates the cell cycle inhibitor p21, a known target of p53, which prevents p53 activation and inhibits p53 basal activity, impeding apoptosis and leading to cell cycle entry and symmetric self-renewing divisions. p21 also activates DNA repair, limiting DNA damage accumulation and self-renewal exhaustion. Stem cells with moderate DNA damage and diminished self-renewal persist after irradiation, however. These findings suggest that stem cells have evolved a unique, p21-dependent response to DNA damage that leads to their immediate expansion and limits their long-term survival.
机译:由于细胞凋亡或衰老,DNA损伤导致增殖停止,从而阻止了DNA改变的传递。这种细胞反应取决于肿瘤抑制因子p53,并作为肿瘤发展的强大屏障。成人干细胞对DNA损伤诱导的凋亡或衰老具有抵抗力,但是,如何执行这种反应并抑制肿瘤发生尚不清楚。我们显示,造血干细胞和乳腺干细胞的辐射上调了细胞周期抑制剂p21(p53的已知靶标),可阻止p53激活并抑制p53基础活性,从而阻止凋亡并导致细胞周期进入和对称的自我更新分裂。 p21还激活DNA修复,限制DNA损伤积累和自我更新衰竭。然而,具有中等DNA损伤并减少了自我更新的干细胞在照射后仍然存在。这些发现表明干细胞已经对DNA损伤产生了独特的,依赖于p21的反应,导致其立即扩增并限制了其长期存活。

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