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Gadd45a 调控小鼠造血干细胞应激反应。

Gadd45a regulates hematopoietic stem cell stress responses in mice.

机构信息

Institute of Aging Research, School of Medicine, Hangzhou Normal University, Hangzhou, China;

出版信息

Blood. 2014 Feb 6;123(6):851-62. doi: 10.1182/blood-2013-05-504084. Epub 2013 Dec 26.

Abstract

Gadd45a has been involved in DNA damage response and in many malignancies, including leukemia. However, the function of Gadd45a in hematopoietic stem cells (HSCs) remains unknown. Here, we reported that Gadd45a-deficient (Gadd45a(-/-)) mice showed a normal hematologic phenotype under homeostatic conditions. However, following 5-fluorouracil treatment, Gadd45a(-/-) HSCs exhibited a faster recovery, associated with an increase in the proliferation rate. Interestingly, young Gadd45a(-/-) HSCs showed enhanced reconstitution ability in serial transplantation. Following ionizing radiation (IR), young Gadd45a(-/-) HSCs exhibited an increased resistance to IR-induced DNA damage, associated with a decrease in the apoptosis rate and delayed DNA repair. The significantly higher level of DNA damage in Gadd45a(-/-) HSCs ultimately promoted B-cell leukemia in further transplanted recipient mice. In old mice, Gadd45a(-/-) HSCs were functionally equal to wild-type HSCs but exhibited more DNA damage accumulation and increased sensitivity to IR than wild-type HSCs. In conclusion, Gadd45a plays a significant role in HSC stress responses. Gadd45a deficiency leads to DNA damage accumulation and impairment in apoptosis after exposure to IR, which increases the susceptibility of leukemogenesis.

摘要

Gadd45a 参与了 DNA 损伤反应和许多恶性肿瘤,包括白血病。然而,Gadd45a 在造血干细胞(HSCs)中的功能尚不清楚。在这里,我们报道了 Gadd45a 缺陷(Gadd45a(-/-))小鼠在稳态条件下表现出正常的血液表型。然而,在 5-氟尿嘧啶处理后,Gadd45a(-/-) HSCs 表现出更快的恢复,伴随着增殖率的增加。有趣的是,年轻的 Gadd45a(-/-) HSCs 在连续移植中表现出增强的重建能力。在电离辐射(IR)后,年轻的 Gadd45a(-/-) HSCs 表现出对 IR 诱导的 DNA 损伤的更高抗性,伴随着凋亡率的降低和 DNA 修复的延迟。Gadd45a(-/-) HSCs 中明显更高水平的 DNA 损伤最终导致进一步移植受体小鼠的 B 细胞白血病。在老年小鼠中,Gadd45a(-/-) HSCs 的功能与野生型 HSCs 相当,但表现出比野生型 HSCs 更高的 DNA 损伤积累和对 IR 的敏感性增加。总之,Gadd45a 在 HSC 应激反应中发挥着重要作用。Gadd45a 缺乏导致暴露于 IR 后 DNA 损伤的积累和凋亡受损,从而增加了白血病发生的易感性。

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