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Tetraploidization or autophagy: The ultimate fate of senescent human endometrial stem cells under ATM or p53 inhibition

机译:四倍体化或自噬:在ATM或p53抑制下衰老的人类子宫内膜干细胞的最终命运

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Previously we demonstrated that endometrium-derived human mesenchymal stem cells (hMESCs) via activation of the ATM/p53/p21/Rb pathway enter the premature senescence in response to oxidative stress. Down regulation effects of the key components of this signaling pathway, particularly ATM and p53, on a fate of stressed hMESCs have not yet been investigated. In the present study by using the specific inhibitors Ku55933 and Pifithrin-, we confirmed implication of both ATM and p53 in H2O2-induced senescence of hMESCs. ATM or p53 down regulation was shown to modulate differently the cellular fate of H2O2-treated hMESCs. ATM inhibition allowed H2O2-stimulated hMESCs to escape the permanent cell cycle arrest due to loss of the functional ATM/p53/p21/Rb pathway, and induced bypass of mitosis and re-entry into S phase, resulting in tetraploid cells. On the contrary, suppression of the p53 transcriptional activity caused a pronounced cell death of H2O2-treated hMESCs via autophagy induction. The obtained data clearly demonstrate that down regulation of ATM or p53 shifts senescence of human endometrial stem cells toward tetraploidization or autophagy.
机译:以前,我们证明了通过激活ATM / p53 / p21 / Rb途径激活的子宫内膜来源的人间充质干细胞(hMESCs)会响应氧化应激而进入早衰。尚未研究该信号传导途径的关键成分,特别是ATM和p53,对应激hMESC命运的下调作用。在本研究中,通过使用特异性抑制剂Ku55933和Pifithrin-,我们证实了H2O2诱导的hMESCs衰老中ATM和p53的影响。显示ATM或p53下调可以不同程度地调节H2O2处理的hMESC的细胞命运。 ATM抑制使H2O2刺激的hMESC由于功能性ATM / p53 / p21 / Rb途径的丧失而逃脱了永久性细胞周期停滞,并诱导有丝分裂旁路并重新进入S期,产生四倍体细胞。相反,对p53转录活性的抑制通过自噬诱导H2O2处理的hMESC引起明显的细胞死亡。获得的数据清楚地表明,ATM或p53的下调将人类子宫内膜干细胞的衰老转移到四倍体化或自噬。

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