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Mbd2-CP2c loop drives adult-type globin gene expression and definitive erythropoiesis

机译:Mbd2-CP2c回路驱动成人型球蛋白基因表达和确定性的红细胞生成

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During hematopoiesis, red blood cells originate from the hematopoietic stem cell reservoir. Although the regulation of erythropoiesis and globin expression has been intensively investigated, the underlining mechanisms are not fully understood, including the interplay between transcription factors and epigenetic factors. Here, we uncover that the Mbd2-free NuRD chromatin remodeling complex potentiates erythroid differentiation of proerythroblasts via managing functions of the CP2c complexes. We found that both Mbd2 and Mbd3 expression is downregulated during differentiation of MEL cells in vitro and in normal erythropoiesis in mouse bone marrow, and Mbd2 downregulation is crucial for erythropoiesis. In uninduced MEL cells, the Mbd2-NuRD complex is recruited to the promoter via Gata1/Fog1, and, via direct binding through p66α, it acts as a transcriptional inhibitor of the CP2c complexes, preventing their DNA binding and promoting degradation of the CP2c family proteins to suppress globin gene expression. Conversely, during erythropoiesis in vitro and in vivo, the Mbd2-free NuRD does not dissociate from the chromatin and acts as a transcriptional coactivator aiding the recruitment of the CP2c complexes to chromatin, and thereby leading to the induction of the active hemoglobin synthesis and erythroid differentiation. Our study highlights the regulation of erythroid differentiation by the Mbd2-CP2c loop.
机译:在造血过程中,红细胞起源于造血干细胞库。尽管已经深入研究了促红细胞生成和球蛋白表达的调控,但尚未充分理解其下调机制,包括转录因子和表观遗传因子之间的相互作用。在这里,我们发现无Mbd2的NuRD染色质重塑复合物通过控制CP2c复合物的功能增强了原红细胞的红系分化。我们发现Mbd2和Mbd3的表达在MEL细胞体外分化和小鼠骨髓正常红细胞生成过程中均被下调,而Mbd2下调对于红细胞生成至关重要。在未诱导的MEL细胞中,Mbd2-NuRD复合物通过Gata1 / Fog1被募集到启动子,并通过与p66α的直接结合,充当CP2c复合物的转录抑制剂,阻止其DNA结合并促进CP2c家族的降解。抑制球蛋白基因表达的蛋白质。相反,在体外和体内促红细胞生成过程中,不含Mbd2的NuRD不会从染色质上解离,而是作为转录共激活剂,帮助CP2c复合物募集到染色质上,从而导致活性血红蛋白合成和类红血球的诱导差异化。我们的研究强调了Mbd2-CP2c回路对类红细胞分化的调节。

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