首页> 外文期刊>Blood: The Journal of the American Society of Hematology >GATA2 is critical for the maintenance of cellular identity in differentiated mast cells derived from mouse bone marrow
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GATA2 is critical for the maintenance of cellular identity in differentiated mast cells derived from mouse bone marrow

机译:GATA2对于维持源自小鼠骨髓的分化肥大细胞的细胞特性至关重要

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摘要

GATA2 plays a crucial role for the mast cell fate decision. We herein demonstrate that GATA2 is also required for the maintenance of the cellular identity in committed mast cells derived from mouse bone marrow (BMMCs). The deletion of the GATA2 DNA binding domain (GATA2 Delta CF) in BMMCs resulted in a loss of the mast cell phenotype and an increase in the number of CD11b- and/or Ly6G/C-positive cells. These cells showed the ability to differentiate into macrophage-and neutrophil-like cells but not into eosinophils. Although the mRNA levels of basophil-specific genes were elevated, CD49b, a representative basophil marker, never appeared on these cells. GATA2 ablation led to a significant upregulation of C/EBP alpha, and forced expression of C/EBP alpha in wild-type BMMCs phenocopied the GATA2DCF cells. Interestingly, simultaneous deletion of the Gata2 and Cebpa genes in BMMCs restored the aberrant increases of CD11b and Ly6G/C while retaining the reduced c-Kit expression. Chromatin immunoprecipitation assays indicated that GATA2 directly binds to the +37-kb region of the Cebpa gene and thereby inhibits the RUNX1 and PU.1 binding to the neighboring region. Upregulation of C/EBP alpha following the loss of GATA2 was not observed in cultured mast cells derived from peritoneal fluid, whereas the repression of c-Kit and other mast cell-specific genes were observed in these cells. Collectively, these results indicate that GATA2 maintains cellular identity by preventing Cebpa gene activation in a subpopulation of mast cells, whereas it plays a fundamental role as a positive regulator of mast cell-specific genes throughout development of this cell lineage.
机译:GATA2对肥大细胞的命运决定起着至关重要的作用。我们在本文中证明,在源自小鼠骨髓(BMMC)的定型肥大细胞中,维持细胞身份也需要GATA2。 BMMCs中GATA2 DNA结合域(GATA2 Delta CF)的缺失导致肥大细胞表型丧失,CD11b和/或Ly6G / C阳性细胞数量增加。这些细胞显示出分化为巨噬细胞和中性粒细胞样细胞的能力,但不能分化为嗜酸性粒细胞。尽管嗜碱性粒细胞特异性基因的mRNA水平升高,但代表性的嗜碱性粒细胞标志物CD49b从未出现在这些细胞上。 GATA2切除导致C / EBP alpha显着上调,并在表型GATA2DCF细胞的野生型BMMC中强迫表达C / EBP alpha。有趣的是,同时删除BMMC中的Gata2和Cebpa基因可以恢复CD11b和Ly6G / C的异常增加,同时保留降低的c-Kit表达。染色质免疫沉淀分析表明,GATA2直接与Cebpa基因的+ 37-kb区域结合,从而抑制RUNX1和PU.1与附近区域的结合。在源自腹膜液的培养的肥大细胞中未观察到GATA2丧失后C / EBPα的上调,而在这些细胞中观察到了c-Kit和其他肥大细胞特异性基因的抑制。总的来说,这些结果表明,GATA2通过阻止肥大细胞亚群中的Cebpa基因活化来维持细胞身份,而在整个细胞谱系的发育中,它作为肥大细胞特异性基因的正向调节剂起着根本性的作用。

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