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Gadd45a deletion aggravates hematopoietic stem cell dysfunction in ATM-deficient mice

机译:Gadd45a缺失加剧ATM缺陷小鼠的造血干细胞功能障碍

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摘要

Ataxia telangiectasia mutated (ATM) kinase plays an essential role in the maintenance of genomic stability. ATM-deficient (ATM−/−) mice exhibit hematopoietic stem cell (HSC) dysfunction and a high incidence of lymphoma. Gadd45a controls cell cycle arrest, apoptosis and DNA repair, and is involved in the ATM-p53 mediated DNA damage response. However, the role of Gadd45a in regulating the functionality of ATM−/− HSCs is unknown. Here we report that Gadd45a deletion did not rescue the defects of T-cells and B-cells development in ATM−/− mice. Instead, ATM and Gadd45a double knockout (ATM−/− Gadd45a−/−) HSCs exhibited an aggravated defect in long-term self-renewal capacity compared to ATM−/− HSCs in HSC transplantation experiments. Further experiments revealed that the aggravated defect of ATM−/− Gadd45a−/− HSCs was due to a reduction of cell proliferation, associated with an accumulation of DNA damage and subsequent activation of DNA damage response including an up-regulation of p53-p21 signaling pathway. Additionally, ATM−/− Gadd45a−/− mice showed an increased incidence of hematopoietic malignancies, as well as an increased rate of metastasis than ATM−/− mice. In conclusion, Gadd45a deletion aggravated the DNA damage accumulation, which subsequently resulted in a further impaired self-renewal capacity and an increased malignant transformation in ATM−/− HSCs.
机译:共济失调的毛细血管扩张突变(ATM)激酶在维持基因组稳定性方面起着至关重要的作用。 ATM缺陷(ATM -/-)小鼠表现出造血干细胞(HSC)功能障碍和淋巴瘤高发。 Gadd45a控制细胞周期停滞,凋亡和DNA修复,并参与ATM-p53介导的DNA损伤反应。但是,Gadd45a在调节ATM -/- HSC功能方面的作用尚不清楚。在这里,我们报道Gadd45a缺失不能挽救ATM -/-小鼠中T细胞和B细胞发育的缺陷。取而代之的是,与ATM 相比,ATM和Gadd45a双敲除(ATM -/- Gadd45a -/-)HSC的长期自我更新能力显示出严重的缺陷。 HSC移植实验中的-/- HSC。进一步的实验表明,ATM -/- Gadd45a -/- HSCs的严重缺陷是由于细胞增殖的减少,与DNA损伤的积累和随后的活化有关。 DNA损伤反应,包括上调p53-p21信号通路。此外,与ATM -/-<相比,ATM -/- Gadd45a -/-小鼠显示造血恶性肿瘤的发生率增加,并且转移率也增加/ sup>小鼠。总之,Gadd45a缺失加剧了DNA损伤的积累,继而导致ATM -/- HSCs的自我更新能力进一步受损,恶性转化增加。

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