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Wip1 deficiency impairs haematopoietic stem cell function via p53 and mTORC1 pathways

机译:Wip1缺乏症通过p53和mTORC1途径损害造血干细胞功能

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摘要

Wild-type p53-induced phosphatase 1 (Wip1) negatively regulates several tumour suppressor and DNA damage response pathways. However, the impact of Wip1 on haematopoietic stem cell (HSC) homeostasis and aging remains unknown. Here we show that Wip1 is highly expressed in HSCs but decreases with age. Wip1-deficient (Wip1(-/-)) mice exhibited multifaceted HSC aging phenotypes, including the increased pool size and impaired repopulating activity. Deletion of p53 rescued the multilineage repopulation defect of Wip1(-/-) HSCs without affecting cellular senescence or apoptosis, indicating that the Wip1-p53 axis regulates HSC differentiation in a manner independent of conventional p53 pathways. However, p53 deletion did not influence the increased HSC pool size in Wip1(-/-) mice. Interestingly, the expansion of HSCs in Wip1(-/-) mice was due to an mTORC1-mediated HSC proliferation. Thus, our study reveals a mechanism of stem cell aging, in which distinct effects of p53 and mTORC1 pathways on HSC aging are governed by Wip1.
机译:野生型p53诱导的磷酸酶1(Wip1)负调节几个肿瘤抑制因子和DNA损伤反应途径。但是,Wip1对造血干细胞(HSC)稳态和衰老的影响仍然未知。在这里,我们显示Wip1在HSC中高度表达,但随着年龄的增长而降低。缺乏Wip1的(Wip1(-/-))小鼠表现出多方面的HSC衰老表型,包括增加的库大小和受损的繁殖活性。 p53的缺失挽救了Wip1(-/-)HSC的多谱系再分化缺陷,而没有影响细胞的衰老或凋亡,这表明Wip1-p53轴以独立于常规p53途径的方式调节HSC分化。但是,p53删除不影响Wip1(-/-)小鼠中增加的HSC库大小。有趣的是,Wip1(-/-)小鼠中HSC的扩增是由于mTORC1介导的HSC增殖。因此,我们的研究揭示了干细胞衰老的机制,其中p53和mTORC1途径对HSC衰老的独特影响受Wip1支配。

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