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首页> 外文期刊>PLoS One >Cooperative Stimulation of Megakaryocytic Differentiation by Gfi1b Gene Targets Kindlin3 and Talin1
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Cooperative Stimulation of Megakaryocytic Differentiation by Gfi1b Gene Targets Kindlin3 and Talin1

机译:Gfi1b基因靶向Kindlin3和Talin1协同刺激巨核细胞分化。

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Understanding the production and differentiation of megakaryocytes from progenitors is crucial for realizing the biology and functions of these vital cells. Previous gene ablation studies demonstrated the essential role of the transcriptional repressor Gfi1b (growth factor independence 1b) in the generation of both erythroid and megakaryocytic cells. However, our recent work has demonstrated the down-regulation of this factor during megakaryocytic differentiation. In this study we identify two new gene targets of Gfi1b, the cytoskeletal proteins Kindlin3 and Talin1, and demonstrate the inverse expression and functions of these cytoskeletal targets relative to Gfi1b, during megakaryocytic differentiation. Both kindlin3 and talin1 promoters exhibit dose dependent Gfi1b and LSD1 (lysine specific demethylase 1; a Gfi1b cofactor) enrichment in megakaryocytes and repression in non-hematopoietic cells. Accordingly the expression of these genes is elevated in gfi1b mutant and LSD1 inhibited hematopoietic cells, while during megakaryocytic differentiation, declining Gfi1b levels fostered the reciprocal upregulation of these cytoskeletal factors. Concordantly, manipulation of Kindlin3 and Talin1 expression demonstrated positive correlation with megakaryocytic differentiation with over-expression stimulating, and inhibition diminishing, this process. Co-operativity between these factors and integrins in promoting differentiation was further underscored by physical interactions between them and integrinβ3/CD61 and by stimulation of differentiation by the Talin1 head domain, which is necessary and sufficient for integrin activation. Therefore this study demonstrates the significance of Gfi1b regulated Kindlin3-Talin1 expression in driving megakaryocytic differentiation and highlights the contribution of cytoskeletal agents in the developmental progression of these platelet progenitors.
机译:了解祖细胞中巨核细胞的产生和分化对于实现这些重要细胞的生物学和功能至关重要。先前的基因消融研究表明,转录抑制因子Gfi1b(生长因子独立性1b)在类红细胞和巨核细胞的产生中都起着至关重要的作用。但是,我们最近的工作证明了在巨核细胞分化过程中该因子的下调。在这项研究中,我们确定了Gfi1b的两个新基因靶标,即细胞骨架蛋白Kindlin3和Talin1,并证明了在巨核细胞分化过程中这些细胞骨架靶标相对于Gfi1b的反向表达和功能。 kindlin3和talin1启动子在巨核细胞中均表现出剂量依赖性的Gfi1b和LSD1(赖氨酸特异性脱甲基酶1; Gfi1b辅因子)富集,在非造血细胞中具有抑制作用。因此,这些基因的表达在gfi1b突变体和LSD1抑制的造血细胞中升高,而在巨核细胞分化期间,下降的Gfi1b水平促进了这些细胞骨架因子的相互上调。一致地,Kindlin3和Talin1表达的操纵显示与巨核细胞分化呈正相关,并具有过度表达的刺激和抑制作用的减弱。这些因子与整联蛋白在促进分化中的协同作用通过它们与整联蛋白β3/ CD61之间的物理相互作用以及Talin1头部结构域对分化的刺激而得到进一步强调,这对于整联蛋白激活是必要的和充分的。因此,本研究证明了Gfi1b调节Kindlin3-Talin1表达在驱动巨核细胞分化中的重要性,并强调了细胞骨架药物在这些血小板祖细胞发育过程中的作用。

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