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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Graded repression of PU.1/Sfpi1 gene transcription by GATA factors regulates hematopoietic cell fate.
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Graded repression of PU.1/Sfpi1 gene transcription by GATA factors regulates hematopoietic cell fate.

机译:GATA因子对PU.1 / Sfpi1基因转录的分级抑制可调节造血细胞的命运。

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摘要

GATA-1 and PU.1 are essential hematopoietic transcription factors that control erythromegakaryocytic and myelolymphoid differentiation, respectively. These proteins antagonize each other through direct physical interaction to repress alternate lineage programs. We used immortalized Gata1(-) erythromegakaryocytic progenitor cells to study how PU.1/Sfpi1 expression is regulated by GATA-1 and GATA-2, a related factor that is normally expressed at earlier stages of hematopoiesis. Both GATA factors bind the PU.1/Sfpi1 gene at 2 highly conserved regions. In the absence of GATA-1, GATA-2 binding is associated with an undifferentiated state, intermediate level PU.1/Sfpi1 expression, and low-level expression of its downstream myeloid target genes. Restoration of GATA-1 function induces erythromegakaryocytic differentiation. Concomitantly, GATA-1 replaces GATA-2 at the PU.1/Sfpi1 locus and PU.1/Sfpi1 expression is extinguished. In contrast, when GATA-1 is not present, shRNA knockdown of GATA-2 increases PU.1/Sfpi1 expression by 3-fold and reprograms the cells to become macrophages. Our findings indicate that GATA factors act sequentially to regulate lineage determination during hematopoiesis, in part by exerting variable repressive effects at the PU.1/Sfpi1 locus.
机译:GATA-1和PU.1是分别控制红细胞巨核细胞和骨髓淋巴样细胞分化的必需造血转录因子。这些蛋白质通过直接的物理相互作用互相拮抗,从而抑制其他谱系程序。我们使用永生化的Gata1(-)红细胞巨核细胞祖细胞来研究PU.1 / Sfpi1表达如何受到GATA-1和GATA-2的调控,GATA-1和GATA-2是一种通常在造血早期表达的相关因子。两个GATA因子都在2个高度保守的区域结合PU.1 / Sfpi1基因。在没有GATA-1的情况下,GATA-2的结合与未分化状态,中间水平的PU.1 / Sfpi1表达和其下游髓样靶基因的低水平表达有关。 GATA-1功能的恢复诱导红细胞巨核细胞分化。同时,GATA-1取代了PU.1 / Sfpi1基因座上的GATA-2,并且PU.1 / Sfpi1表达消失了。相反,当不存在GATA-1时,GATA-2的shRNA敲低会使PU.1 / Sfpi1表达增加3倍,并使细胞重新编程成为巨噬细胞。我们的发现表明,GATA因子在造血过程中顺序发挥作用,调节谱系的确定,部分原因是在PU.1 / Sfpi1基因座上发挥了可变的抑制作用。

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