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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Ssb1 and Ssb2 cooperate to regulate mouse hematopoietic stem and progenitor cells by resolving replicative stress
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Ssb1 and Ssb2 cooperate to regulate mouse hematopoietic stem and progenitor cells by resolving replicative stress

机译:SSB1和SSB2通过分解复制应力来协作以调节小鼠造血干细胞和祖细胞

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摘要

Hematopoietic stem and progenitor cells (HSPCs) are vulnerable to endogenous damage and defects in DNA repair can limit their function. The 2 single-stranded DNA (ssDNA) binding proteins SSB1 and SSB2 are crucial regulators of the DNA damage response; however, their overlapping roles during normal physiology are incompletely understood. We generated mice in which both Ssb1 and Ssb2 were constitutively or conditionally deleted. Constitutive Ssb1/Ssb2 double knockout (DKO) caused early embryonic lethality, whereas conditional Ssb1/Ssb2 double knockout (cDKO) in adult mice resulted in acute lethality due to bone marrow failure and intestinal atrophy featuring stem and progenitor cell depletion, a phenotype unexpected from the previously reported single knockout models of Ssb1 or Ssb2. Mechanistically, cDKO HSPCs showed altered replication fork dynamics, massive accumulation of DNA damage, genome-wide doublestrand breaks enriched at Ssb-binding regions and CpG islands, together with the accumulation of R-loops and cytosolic ssDNA. Transcriptional profiling of cDKO HSPCs revealed the activation of p53 and interferon (IFN) pathways, which enforced cell cycling in quiescent HSPCs, resulting in their apoptotic death. The rapid cell death phenotype was reproducible in in vitro cultured cDKO-hematopoietic stem cells, which were significantly rescued by nucleotide supplementation or after depletion of p53. Collectively, Ssb1 and Ssb2 control crucial aspects of HSPC function, including proliferation and survival in vivo by resolving replicative stress to maintain genomic stability.
机译:造血干细胞和祖细胞(HSPCs)容易受到内源性损伤的影响,DNA修复中的缺陷可以限制它们的功能。 2个单链DNA(SSDNA)结合蛋白SSB1和SSB2是DNA损伤反应的关键调节剂;然而,它们在正常生理过程中的重叠作用被不完全理解。我们产生了组成型或有条件地删除了SSB1和SSB2的小鼠。本构SSB1 / SSB2双敲除(DKO)引起早期胚胎致命性,而成年小鼠的条件SSB1 / SSB2双敲除(CDKO)导致骨髓衰竭和肠道萎缩引起的症和祖细胞枯竭,从而意外的表型先前报道的SSB1或SSB2的单一敲除型号。机械地,CDKO HSPCS显示复制叉动力学改变,DNA损伤的大量积累,在SSB绑定区和CPG岛中富集的基因组双击症和CPG岛屿,以及R圈和细胞溶质SSDNA的积累。 CDKO HSPCS的转录分析显示P53和干扰素(IFN)途径的激活,该途径强制循环循环循环,导致它们的凋亡死亡。快速细胞死亡表型在体外培养的cdko-造血干细胞中可重现,其被核苷酸补充或P53耗尽明显地救出。集体,SSB1和SSB2控制HSPC功能的关键方面,包括通过解决复制应力来维持基因组稳定性的体内增殖和生存。

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    QIMR Berghofer Med Res Inst 300 Herston Rd Herston Qld 4006 Australia;

    QIMR Berghofer Med Res Inst 300 Herston Rd Herston Qld 4006 Australia;

    QIMR Berghofer Med Res Inst 300 Herston Rd Herston Qld 4006 Australia;

    Univ Warsaw Ctr New Technol Lab Bioinformat &

    Syst Biol Warsaw Poland;

    Univ Texas Med Branch Inst Translat Sci Dept Biochem &

    Mol Biol Galveston TX 77555 USA;

    Houston Methodist Res Inst Dept Radiat Oncol Houston TX USA;

    QIMR Berghofer Med Res Inst 300 Herston Rd Herston Qld 4006 Australia;

    QIMR Berghofer Med Res Inst 300 Herston Rd Herston Qld 4006 Australia;

    QIMR Berghofer Med Res Inst 300 Herston Rd Herston Qld 4006 Australia;

    QIMR Berghofer Med Res Inst 300 Herston Rd Herston Qld 4006 Australia;

    QIMR Berghofer Med Res Inst 300 Herston Rd Herston Qld 4006 Australia;

    QIMR Berghofer Med Res Inst 300 Herston Rd Herston Qld 4006 Australia;

    QIMR Berghofer Med Res Inst 300 Herston Rd Herston Qld 4006 Australia;

    Univ Warsaw Ctr New Technol Lab Bioinformat &

    Syst Biol Warsaw Poland;

    Univ Warsaw Ctr New Technol Lab Bioinformat &

    Syst Biol Warsaw Poland;

    Univ Texas Med Branch Inst Translat Sci Dept Biochem &

    Mol Biol Galveston TX 77555 USA;

    Univ Texas Med Branch Inst Translat Sci Dept Biochem &

    Mol Biol Galveston TX 77555 USA;

    Karolinska Inst Dept Med Biochem &

    Biophys Div Translat Med &

    Chem Biol Sci Life Lab Stockholm;

    QIMR Berghofer Med Res Inst 300 Herston Rd Herston Qld 4006 Australia;

    Univ Queensland Sch Med Brisbane Qld Australia;

    Univ Adelaide South Australia Pathol &

    Sch Vet Sci Adelaide SA Australia;

    NYU Sch Med Canc Inst Dept Pathol New York NY USA;

    Univ Melbourne St Vincents Hosp St Vincents Inst Med Res Fitzroy Vic Australia;

    Univ Texas Med Branch Inst Translat Sci Dept Biochem &

    Mol Biol Galveston TX 77555 USA;

    Univ Warsaw Ctr New Technol Lab Bioinformat &

    Syst Biol Warsaw Poland;

    QIMR Berghofer Med Res Inst 300 Herston Rd Herston Qld 4006 Australia;

    QIMR Berghofer Med Res Inst 300 Herston Rd Herston Qld 4006 Australia;

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  • 正文语种 eng
  • 中图分类 血液及淋巴系疾病 ;
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