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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >GATA2 regulates dendritic cell differentiation
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GATA2 regulates dendritic cell differentiation

机译:GATA2调节树突状细胞分化

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Dendritic cells (DCs) are critical immune response regulators; however, the mechanism of DC differentiation is not fully understood. Heterozygous germ line GATA2 mutations induce GATA2-deficiency syndrome, characterized by monocytopenia, a predisposition to myelodysplasia/acute myeloid leukemia, and a profoundly reduced DC population, which is associated with increased susceptibility to viral infections, impaired phagocytosis, and decreased cytokine production. To define the role of GATA2 in DC differentiation and function, we studied Gata2 conditional knockout and haploinsufficient mice. Gata2 conditional deficiency significantly reduced the DC count, whereas Gata2 haploinsufficiency did not affect this population. GATA2 was required for the in vitro generation of DCs from Lin(-)Sca-1(+)Kit(+) cells, common myeloid-restricted progenitors, and common dendritic cell precursors, but not common lymphoid-restricted progenitors or granulocyte-macrophage progenitors, suggesting that GATA2 functions in the myeloid pathway of DC differentiation. Moreover, expression profiling demonstrated reduced expression of myeloid-related genes, including mafb, and increased expression of T-lymphocyte-related genes, including Gata3 and Tcf7, in Gata2-deficient DC progenitors. In addition, GATA2 was found to bind an enhancer element 190-kb downstream region of Gata3, and a reporter assay exhibited significantly reduced luciferase activity after adding this enhancer region to the Gata3 promoter, which was recovered by GATA sequence deletion within Gata3 1190. These results suggest that GATA2 plays an important role in cell-fate specification toward the myeloid vs T-lymphocyte lineage by regulating lineage-specific transcription factors in DC progenitors, thereby contributing to DC differentiation.
机译:树突状细胞(DC)是重要的免疫反应调节剂;但是,DC分化的​​机制尚不完全清楚。杂合种系GATA2突变诱导GATA2缺乏综合症,其特征是单核细胞减少,骨髓增生异常/急性髓细胞性白血病的易感性以及DC数量的大幅减少,这与对病毒感染的易感性增加,吞噬功能受损和细胞因子生成减少有关。为了定义GATA2在DC分化和功能中的作用,我们研究了Gata2条件性基因敲除和单倍型小鼠。 Gata2有条件的缺乏显着降低了DC计数,而Gata2的单倍体功能不足并未影响该人群。从Lin(-)Sca-1(+)Kit(+)细胞,常见的髓样限制性祖细胞和常见的树突状细胞前体体外生成DC时需要GATA2,但不需要常见的淋巴样限制性祖细胞或粒细胞巨噬细胞祖细胞,提示GATA2在DC分化的​​髓样途径中起作用。此外,表达谱分析表明,在缺乏Gata2的DC祖细胞中,髓样相关基因(包括mafb)的表达减少,而T淋巴细胞相关基因(包括Gata3和Tcf7)的表达增加。此外,发现GATA2结合了Gata3 190 kb下游区域的增强子元件,并且在将增强子区域添加到Gata3启动子后,报告基因检测显示萤光素酶活性显着降低,这可通过在Gata3 1190中删除GATA序列来恢复。结果表明,GATA2通过调节DC祖细胞中的谱系特异性转录因子,在针对髓样与T淋巴细胞谱系的细胞命运规范中发挥重要作用,从而有助于DC分化。

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