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核酸外切酶 1 是在非静止造血干细胞和祖细胞中修复 DNA 双链断裂时存活的关键介质。

Exonuclease 1 is a critical mediator of survival during DNA double strand break repair in nonquiescent hematopoietic stem and progenitor cells.

机构信息

Department of Pharmacology, Case Western Reserve University and University Hospitals Case Medical Center, Cleveland, Ohio, USA; Division of Hematology/Oncology, National Center for Regenerative Medicine, Case Western Reserve University and University Hospitals Case Medical Center, Cleveland, Ohio, USA; Case Comprehensive Cancer Center, Seidman Cancer Center, Case Western Reserve University and University Hospitals Case Medical Center, Cleveland, Ohio, USA.

出版信息

Stem Cells. 2014 Feb;32(2):582-93. doi: 10.1002/stem.1596.

Abstract

Hematopoietic stem cell (HSC) populations require DNA repair pathways to maintain their long-term survival and reconstitution capabilities, but mediators of these processes are still being elucidated. Exonuclease 1 (Exo1) participates in homologous recombination (HR) and Exo1 loss results in impaired 5' HR end resection. We use cultured Exo1(mut) fibroblasts and bone marrow to demonstrate that loss of Exo1 function results in defective HR in cycling cells. Conversely, in Exo1(mut) mice HR is not required for maintenance of quiescent HSCs at steady state, confirming the steady state HSC reliance on nonhomologous end joining (NHEJ). Exo1(mut) mice sustained serial repopulation, displayed no defect in competitive repopulation or niche occupancy, and exhibited no increased sensitivity to whole body ionizing radiation. However, when Exo1(mut) HSCs were pushed into cell cycle in vivo with 5-fluorouracil or poly IC, the hematopoietic population became hypersensitive to IR, resulting in HSC defects and animal death. We propose Exo1-mediated HR is dispensable for stem cell function in quiescent HSC, whereas it is essential to HSC response to DNA damage processing after cell cycle entry, and its loss is not compensated by intact NHEJ. In HSCs, the maintenance of stem cell function after DNA damage is dependent on the DNA repair capacity, segregated by active versus quiescent points in cell cycle.

摘要

造血干细胞(HSC)群体需要 DNA 修复途径来维持其长期的存活和重建能力,但这些过程的介导物仍在阐明之中。核酸外切酶 1(Exo1)参与同源重组(HR),而 Exo1 的缺失会导致 5' HR 末端切除受损。我们使用培养的 Exo1(mut)成纤维细胞和骨髓来证明 Exo1 功能的丧失会导致细胞周期中 HR 受损。相反,在 Exo1(mut)小鼠中,HR 对于静止状态下静止 HSC 的维持不是必需的,这证实了静止 HSC 依赖非同源末端连接(NHEJ)。Exo1(mut)小鼠能够连续进行再群体化,在竞争性再群体化或龛位占据方面没有缺陷,并且对全身电离辐射没有增加的敏感性。然而,当 Exo1(mut)HSC 在用 5-氟尿嘧啶或聚 IC 体内推入细胞周期时,造血细胞群对 IR 变得敏感,导致 HSC 缺陷和动物死亡。我们提出 Exo1 介导的 HR 在静止 HSC 中的干细胞功能中是可有可无的,而在细胞周期进入后 HSC 对 DNA 损伤处理的反应中是必不可少的,并且其缺失不能通过完整的 NHEJ 来补偿。在 HSCs 中,DNA 损伤后干细胞功能的维持依赖于 DNA 修复能力,通过细胞周期中的活跃点和静止点来区分。

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