首页> 外文期刊>Blood: The Journal of the American Society of Hematology >The DPY30 subunit in SET1/MLL complexes regulates the proliferation and differentiation of hematopoietic progenitor cells
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The DPY30 subunit in SET1/MLL complexes regulates the proliferation and differentiation of hematopoietic progenitor cells

机译:SET1 / MLL复合物中的DPY30亚基调节造血祖细胞的增殖和分化

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摘要

Epigenetic mechanisms, including histone modifications, have emerged as important factors influencing cell fate determination. The functional role of H3K4 methylation, however, remains largely unclear in the maintenance and differentiation of hematopoietic stem cells (HSCs)/hematopoietic progenitor cells (HPCs). Here we show that DPY30, a shared core subunit of the SET1/MLL family methyltransferase complexes and a facilitator of their H3K4 methylation activity, is important for ex vivo proliferation and differentiation of human CD34+ HPCs. DPY30 promotes HPC proliferation by directly regulating the expression of genes critical for cell proliferation. Interestingly, while DPY30 knockdown in HPCs impaired their differentiation into the myelomonocytic lineage, it potently promoted hemoglobin production and affected the kinetics of their differentiation into the erythroid lineage. In an in vivo model, we show that morpholino-mediated dpy30 knockdown resulted in severe defects in the development of the zebrafish hematopoietic system, which could be partially rescued by coinjection of dpy30 messenger RNA. Taken together, our results establish a critical role of DPY30 in the proliferation and appropriate differentiation of hematopoietic progenitor cells and in animal hematopoiesis. Finally, we also demonstrate a crucial role of DPY30 in the growth of several MLL1-fusion-mediated leukemia cell lines.
机译:表观遗传机制,包括组蛋白修饰,已经成为影响细胞命运决定的重要因素。然而,在维持和分化造血干细胞(HSC)/造血祖细胞(HPC)方面,H3K4甲基化的功能作用仍不清楚。在这里,我们显示DPY30,SET1 / MLL家族甲基转移酶复合物的一个共享核心亚基,以及其H3K4甲基化活性的促进剂,对于人CD34 + HPC的离体增殖和分化很重要。 DPY30通过直接调节对细胞增殖至关重要的基因的表达来促进HPC增殖。有趣的是,虽然HPC中的DPY30敲低削弱了它们分化为骨髓单核细胞谱系的能力,但它有效地促进了血红蛋白的产生并影响了它们分化为红系谱系的动力学。在体内模型中,我们显示吗啉代介导的dpy30敲低导致斑马鱼造血系统发育中的严重缺陷,可以通过共注射dpy30信使RNA来部分挽救。综上所述,我们的结果确立了DPY30在造血祖细胞的增殖和适当分化以及动物造血中的关键作用。最后,我们还证明了DPY30在几种MLL1融合介导的白血病细胞系生长中的关键作用。

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