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C-terminal mutation of RUNX1 attenuates the DNA-damage repair response in hematopoietic stem cells

机译:RUNX1 的C端突变减弱了造血干细胞的DNA损伤修复反应

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Loss-of-function mutations of RUNX1 have been found in acute myeloid leukemia (AML) and myelodysplastic syndromes (MDSs). Although several reports have suggested roles for RUNX1 as a tumor suppressor, its precise function remains unknown. Because gene alterations of RUNX1 by themselves do not lead to the development of leukemia in mouse models, additional mutation(s) would be required for leukemia development. Here, we report that the C-terminal deletion mutant of RUNX1, RUNX1dC, attenuates DNA-damage repair responses in hematopoietic stem/progenitor cells. γH2AX foci, which indicate the presence of DNA double-strand breaks, were more abundantly accumulated in RUNX1dC-transduced lineage?Sca1+c-kit+ (LSK) cells than in mock-transduced LSK cells both in a steady state and after γ-ray treatment. Expression profiling by real-time -PCR array revealed RUNX1dC represses the expression of Gadd45a, a sensor of DNA stress. Furthermore, bone marrow cells from MDS/AML patients harboring the RUNX1-C-terminal mutation showed significantly lower levels of GADD45A expression compared with those from MDS/AML patients with wild-type RUNX1. As for this mechanism, we found that RUNX1 directly regulates the transcription of GADD45A and that RUNX1 and p53 synergistically activate the GADD45A transcription. Together, these results suggest Gadd45a dysfunction due to RUNX1 mutations can cause additional mutation(s) required for multi-step leukemogenesis.
机译:在急性髓细胞性白血病(AML)和骨髓增生异常综合征(MDSs)中发现了RUNX1的功能丧失突变。尽管有几篇报道提出了RUNX1作为肿瘤抑制因子的作用,但其确切功能仍不清楚。因为RUNX1本身的基因改变不会导致小鼠模型中白血病的发生,所以白血病的发生还需要其他突变。在这里,我们报告的RUNX1,RUNX1dC的C端删除突变体削弱造血干/祖细胞中的DNA损伤修复反应。 γH2AX焦点表明存在DNA双链断裂,在稳态和γ射线照射后,它们在RUNX1dC转导的谱系Sca1 + c-kit +(LSK)细胞中比在模拟转染的LSK细胞中更丰富地积累。治疗。通过实时-PCR阵列进行的表达谱分析显示,RUNX1dC抑制了DNA压力传感器Gadd45a的表达。此外,与具有野生型RUNX1的MDS / AML患者相比,具有RUNX1-C端突变的MDS / AML患者的骨髓细胞显示出明显较低的GADD45A表达水平。关于此机制,我们发现RUNX1直接调节GADD45A的转录,而RUNX1和p53协同激活GADD45A的转录。总之,这些结果表明,由于RUNX1突变引起的Gad​​d45a功能障碍可能导致多步白血病发生所需的其他突变。

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