首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Thrombopoietin promotes NHEJ DNA repair in hematopoietic stem cells through specific activation of Erk and NF-kB pathways and their target, IEX-1
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Thrombopoietin promotes NHEJ DNA repair in hematopoietic stem cells through specific activation of Erk and NF-kB pathways and their target, IEX-1

机译:血小板生成素通过特异性激活Erk和NF-kB途径及其靶标IEX-1促进造血干细胞的NHEJ DNA修复

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摘要

Loss of hematopoietic stem cell (HSC) function and increased risk of developing hematopoietic malignancies are severe and concerning complications of anticancer radiotherapy and chemotherapy. We have previously shown that thrombopoietin (TPO), a critical HSC regulator, ensures HSC chromosomal integrity and function in response to 7-irradiation by regulating their DNA-damage response. TPO directly affects the double-strand break (DSB) repair machinery through increased DNA-protein kinase (DNA-PK) phosphorylation and nonhomologous end-joining (NHEJ) repair efficiency and fidelity. This effect is not shared by other HSC growth factors, suggesting that TPO triggers a specific signal in HSCs facilitating DNA-PK activation upon DNA damage. The discovery of these unique signaling pathways will provide a means of enhancing TPO-desirable effects on HSCs and improving the safety of anticancer DNA agents. We show here that TPO specifically triggers Erk and nuclear factor kB (NF-kB) pathways in mouse hematopoietic stem and progenitor cells (HSPCs). Both of these pathways are required for a TPO-mediated increase in DSB repair. They cooperate to induce and activate the early stress-response gene, lex-1 (ier3), upon DNA damage, lex-1 forms a complex with pERK and the catalytic subunit of DNA-PK, which is necessary and sufficient to promote TPO-increased DNA-PK activation and NHEJ DSB repair in both mouse and human HSPCs.
机译:造血干细胞(HSC)功能的丧失和造血恶性肿瘤发生的风险增加非常严重,并且涉及抗癌放疗和化疗的并发症。我们以前已经表明,血小板生成素(TPO)是一种关键的HSC调节剂,可通过调节其DNA损伤反应来确保HSC染色体完整性和功能,以响应7辐射。 TPO通过增加DNA-蛋白激酶(DNA-PK)磷酸化作用和非同源末端连接(NHEJ)修复效率和保真度,直接影响双链断裂(DSB)修复机制。其他HSC生长因子未共享此效应,这表明TPO触发HSC中的特定信号,从而促进DNA损伤后DNA-PK的活化。这些独特的信号传导途径的发现将提供一种增强TPO对HSC的理想作用并提高抗癌DNA试剂安全性的手段。我们在这里显示TPO特异性触发小鼠造血干细胞和祖细胞(HSPCs)中的Erk和核因子kB(NF-kB)途径。这两个途径都是TPO介导的DSB修复增加所必需的。他们合作诱导并激活早期应激反应基因lex-1(ier3),一旦DNA受损,lex-1与pERK和DNA-PK的催化亚基形成复合物,这对于促进TPO-在小鼠和人类HSPC中都增加了DNA-PK激活和NHEJ DSB修复。

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