Borodkina Aleksandra V, Shatrova Alla N, Deryabin Pavel I, Grukova Anastasiya A, Nikolsky Nikolay N, Burova Elena B
a Department of Intracellular Signaling and Transport , Institute of Cytology, Russian Academy of Sciences , St. Petersburg , Russia.
b Department of Medical Physics , St. Petersburg State Polytechnical University , St. Petersburg , Russia.
Cell Cycle. 2016;15(1):117-27. doi: 10.1080/15384101.2015.1121326.
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-α, we confirmed implication of both ATM and p53 in H(2)O(2)-induced senescence of hMESCs. ATM or p53 down regulation was shown to modulate differently the cellular fate of H(2)O(2)-treated hMESCs. ATM inhibition allowed H(2)O(2)-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 H(2)O(2)-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.
此前我们证明,子宫内膜来源的人间充质干细胞(hMESCs)通过激活ATM/p53/p21/Rb信号通路,对氧化应激产生反应而进入早衰状态。该信号通路关键成分,特别是ATM和p53,对受应激hMESCs命运的下调作用尚未得到研究。在本研究中,我们使用特异性抑制剂Ku55933和Pifithrin-α,证实了ATM和p53均参与H₂O₂诱导的hMESCs衰老过程。结果显示,ATM或p53的下调对H₂O₂处理的hMESCs的细胞命运有不同的调节作用。抑制ATM可使H₂O₂刺激的hMESCs因功能性ATM/p53/p21/Rb信号通路缺失而逃避永久性细胞周期阻滞,并诱导有丝分裂旁路和重新进入S期,从而产生四倍体细胞。相反,抑制p53转录活性会通过诱导自噬导致H₂O₂处理的hMESCs发生明显细胞死亡。所获数据清楚地表明,ATM或p53的下调会使人子宫内膜干细胞的衰老向四倍体化或自噬转变。