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Expression of the runt homology domain of RUNX1 disrupts homeostasis of hematopoietic stem cells and induces progression to myelodysplastic syndrome

机译:RUNX1矮子同源域的表达破坏造血干细胞的稳态并诱导发展为骨髓增生异常综合症

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摘要

Mutations of RUNX1 are detected in patients with myelodysplastic syndrome (MDS). In particular, C-terminal truncation mutations lack a transcription regulatory domain and have increased DNA binding through the runt homology domain. The expression of the runt homology domain, RUNX1(41-214), in mouse hematopoietic cells induced progression to MDS and acute myeloid leukemia. Analysis of premyelodysplastic animals found expansion of c-Kit+Sca-1+Lin cells and skewed differentiation to myeloid at the expense of the lymphoid lineage. These abnormalities correlate with the phenotype of Runx1-deficient animals, as expected given the reported dominant-negative role of C-terminal mutations over the full-length RUNX1. However, MDS is not observed in Runx1-deficient animals. Gene expression profiling found that RUNX1(41-214) c-Kit+Sca-1+Lin cells have an overlapping yet distinct gene expression profile from Runx1-deficient animals. Moreover, an unexpected parallel was observed between the hematopoietic phenotype of RUNX1(41-214) and aged animals. Genes deregulated in RUNX1(41-214), but not in Runx1-deficient animals, were inversely correlated with the aging gene signature of HSCs, suggesting that disruption of the expression of genes related to normal aging by RUNX1 mutations contributes to development of MDS. The data presented here provide insights into the mechanisms of development of MDS in HSCs by C-terminal mutations of RUNX1.
机译:在患有骨髓增生异常综合症(MDS)的患者中检测到RUNX1突变。特别地,C末端截短突变缺乏转录调节结构域,并且通过欠缺同源性结构域具有增加的DNA结合。小鼠造血细胞中欠缺同源域RUNX1(41-214)的表达诱导了向MDS和急性髓性白血病的进展。对骨髓增生异常前体动物的分析发现,c-Kit + Sca-1 + Lin -细胞扩增并向骨髓方向分化,但以淋巴样为代价血统。这些异常与Runx1缺陷动物的表型相关,如所报道的全长RUNX1上C端突变的显性负作用所预期的那样。但是,在Runx1缺陷动物中未观察到MDS。基因表达谱分析发现,RUNX1(41-214)c-Kit + Sca-1 + Lin -细胞具有重叠但截然不同的基因表达来自Runx1缺陷动物的资料。此外,在RUNX1(41-214)的造血表型和老年动物之间观察到出乎意料的平行。在RUNX1(41-214)中被解除调节的基因,而在Runx1缺陷动物中则没有,与HSC的衰老基因特征成反比,这表明RUNX1突变破坏了与正常衰老有关的基因表达,从而促进了MDS的发展。此处提供的数据提供了通过RUNX1的C端突变在HSC中发展MDS的机制的见解。

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