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HOXA10 is a critical regulator for hematopoietic stem cells and erythroid/megakaryocyte development.

机译:HOXa10是造血干细胞和红细胞/巨核细胞发育的关键调节因子。

摘要

The Homeobox (Hox) transcription factors are important regulators of normal and malignant hematopoiesis because they control proliferation, differentiation, and self-renewal of hematopoietic cells at different levels of the hematopoietic hierarchy. In transgenic mice we show that the expression of HOXA10 is tightly regulated by doxycycline. Intermediate concentrations of HOXA10 induced a 15-fold increase in the repopulating capacity of hematopoietic stem cells (HSCs) after 13 days of in vitro culture. Notably, the proliferation induction of HSC by HOXA10 was dependent on the HOXA10 concentration, because high levels of HOXA10 had no effect on HSC proliferation. Furthermore, high levels of HOXA10 blocked erythroid and megakaryocyte development, demonstrating that tight regulation of HOXA10 is critical for normal development of the erythroid and megakaryocytic lineages. The HOXA10-mediated effects on hematopoietic cells were associated with altered expression of genes that govern stem-cell self-renewal and lineage commitment (eg, hepatic leukemia factor [HlF], Dickkopf-1 [Dkk-1], growth factor independent-1 [Cfl-1], and Gata-1). Interestingly, binding sites for HOXA10 were found in HLF, Dkk-1, and Gata-1, and Dkk-1 and Gfl-1 were transcriptionally activated by HOXA10. These findings reveal novel molecular pathways that act downstream of HOXA10 and identify HOXA10 as a master regulator of postnatal hematopoietic development. (C) 2007 by The American Society of Hematology.
机译:同源盒(Hox)转录因子是正常和恶性造血作用的重要调节剂,因为它们在不同程度的造血系统中控制造血细胞的增殖,分化和自我更新。在转基因小鼠中,我们显示了HOXA10的表达受到强力霉素的严格调节。在体外培养13天后,中等浓度的HOXA10诱导造血干细胞(HSC)的繁殖能力提高了15倍。值得注意的是,HOXA10对HSC的增殖诱导取决于HOXA10的浓度,因为高水平的HOXA10对HSC的增殖没有影响。此外,高水平的HOXA10会阻止红细胞和巨核细胞的发育,这表明HOXA10的严格调节对于红细胞和巨核细胞谱系的正常发育至关重要。 HOXA10介导的对造血细胞的作用与控制干细胞自我更新和谱系承诺的基因表达的改变有关(例如,肝白血病因子[HlF],Dickkopf-1 [Dkk-1],生长因子独立1 [Cfl-1]和Gata-1)。有趣的是,在HLF,Dkk-1和Gata-1中发现了HOXA10的结合位点,并且HOXA10转录激活了Dkk-1和Gfl-1。这些发现揭示了在HOXA10下游起作用的新型分子途径,并将HOXA10鉴定为出生后造血发育的主要调节剂。 (C)2007年,美国血液学会。

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