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Ikaros limits basophil development by suppressing C/EBP-α expression

机译:Ikaros通过抑制C /EBP-α表达来限制嗜碱性粒细胞的发育

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摘要

The Ikaros gene (Ikzf1) encodes a family of zinc-finger transcription factors implicated in hematopoietic cell differentiation. Here we show that Ikaros suppresses the development of basophils, which are proinflammatory cells of the myeloid lineage. In the absence of extrinsic basophil-inducing signals, Ikaros−/− (Ik−/−) mice exhibit increases in basophil numbers in blood and bone marrow and in their direct precursors in bone marrow and the spleen, as well as decreased numbers of intestinal mast cells. In vitro culture of Ik−/− bone marrow under mast cell differentiation conditions also results in predominance of basophils. Basophil expansion is associated with an increase in basophil progenitors, increased expression of Cebpa and decreased expression of mast cell-specifying genes Hes1 and microphthalmia-associated transcription factor (Mitf). Ikaros directly associates with regulatory sites within Cebpa and Hes1 and regulates the acquisition of permissive H3K4 tri-methylation marks at the Cebpa locus and reduces H3K4 tri-methylation at the Hes1 promoter. Ikaros blockade in cultured cells or transfer of Ik−/− bone marrow into irradiated Ik+/+ recipients also results in increased basophils confirming a cell-intrinsic effect of Ikaros on basophil development. We conclude that Ikaros is a suppressor of basophil differentiation under steady-state conditions and that it acts by regulating permissive chromatin modifications of Cebpa.
机译:Ikaros基因(Ikzf1)编码与造血细胞分化有关的锌指转录因子家族。在这里,我们显示了Ikaros抑制了嗜碱性粒细胞的发育,这种嗜碱性粒细胞是髓系的促炎细胞。在没有外源性嗜碱细胞诱导信号的情况下,Ikaros -/-(Ik -// )小鼠血液和骨髓及其直接前体的嗜碱性粒细胞数量增加在骨髓和脾脏,以及肠道肥大细胞数量减少。 Ik -// 骨髓在肥大细胞分化条件下的体外培养也导致嗜碱性粒细胞占优势。嗜碱性粒细胞的扩增与嗜碱性粒细胞祖细胞的增加,Cebpa表达的增加以及肥大细胞特异性基因Hes1和小眼症相关转录因子(Mitf)的表达降低有关。 Ikaros直接与Cebpa和Hes1内的调控位点缔合,并在Cebpa基因座上调节许可H3K4三甲基化标记的获得,并在Hes1启动子上降低H3K4三甲基化。 Ikaros在培养细胞中的阻滞或将Ik -/-骨髓转移至受辐照的Ik + / + 受体中,也会导致嗜碱粒细胞增多,这证实了Ikaros对嗜碱性粒细胞的内在作用发展。我们得出的结论是,Ikaros在稳态条件下是嗜碱性粒细胞分化的抑制剂,并且它通过调节Cebpa的许可染色质修饰起作用。

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