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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >PUMILIO/FOXP1 signaling drives expansion of hematopoietic stem/progenitor and leukemia cells
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PUMILIO/FOXP1 signaling drives expansion of hematopoietic stem/progenitor and leukemia cells

机译:Pumilio / Foxp1信号传导驱动造血干/祖和白血病细胞的扩张

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摘要

RNA-binding proteins (RBPs) have emerged as important regulators of invertebrate adult stem cells, but their activities remain poorly appreciated in mammals. Using a short hairpin RNA strategy, we demonstrate here that the 2 mammalian RBPs, PUMILIO (PUM)1 and PUM2, members of the PUF family of posttranscriptional regulators, are essential for hematopoietic stem/progenitor cell (HSPC) proliferation and survival in vitro and in vivo upon reconstitution assays. Moreover, we found that PUM1/2 sustain myeloid leukemic cell growth. Through a proteomic approach, we identified the FOXP1 transcription factor as a new target of PUM1/2. Contrary to its canonical repressive activity, PUM1/2 rather promote FOXP1 expression by a direct binding to 2 canonical PUM responsive elements present in the FOXP1-3' untranslated region (UTR). Expression of FOXP1 strongly correlates with PUM1 and PUM2 levels in primary HSPCs and myeloid leukemia cells. We demonstrate that FOXP1 by itself supports HSPC and leukemic cell growth, thus mimicking PUM activities. Mechanistically, FOXP1 represses the expression of the p21(-CIP1) and p27(-KIP1) cell cycle inhibitors. Enforced FOXP1 expression reverses shPUM antiproliferative and proapoptotic activities. Altogether, our results reveal a novel regulatory pathway, underscoring a previously unknown and interconnected key role of PUM1/2 and FOXP1 in regulating normal HSPC and leukemic cell growth.
机译:RNA结合蛋白(RBPS)被出现为无脊椎动物成人干细胞的重要调节剂,但它们的活动在哺乳动物中仍然普及。使用短发夹RNA策略,我们在此表明​​,2哺乳动物Rbps,Pumilio(Pum)1和Pum2,Puf Puf Puf术语监管剂的成员,对造血干/祖细胞(HSPC)增殖和体外生存是必不可少的体内重构测定。此外,我们发现Pum1 / 2培养骨髓性白血病细胞生长。通过蛋白质组学方法,我们将Foxp1转录因子鉴定为Pum1 / 2的新靶标。与其典型抑制活性相反,PUM1 / 2相当促进FoxP1表达,直接结合到Foxp1-3'未转换区域(UTR)中存在的2个典型的PUM响应元件。 Foxp1的表达与原发性Hspcs和髓性白血病细胞的Pum1和Pum2水平强烈相关。我们证明Foxp1本身支持HSPC和白血病细胞生长,从而模仿PUM活动。机械地,FoxP1压制P21(-CIP1)和P27(-KIP1)细胞周期抑制剂的表达。强制性foxp1表达逆转抗增殖和凋亡活动。完全,我们的结果揭示了一种新的调节途径,强调了Pum1 / 2和FoxP1在调节正常HSPC和白血病细胞生长方面的先前未知和相互连接的关键作用。

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