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EKLF Directly Activates the p21WAF1/CIP1 Gene by Proximal Promoter and Novel Intronic Regulatory Regions during Erythroid Differentiation▿

机译:EKLF在红系分化过程中通过近端启动子和新的内含子调节区直接激活p21WAF1 / CIP1基因▿

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摘要

The switch from proliferation to differentiation during the terminal stages of erythropoiesis is a tightly controlled process that relies in part on transcription factor-mediated activation of cell cycle components. EKLF is a key transcription factor that is necessary for the initial establishment of the red cell phenotype. Here, we find that EKLF also plays a role during the subsequent differentiation process, as it induces p21WAF1/CIP1 expression independent of p53 to regulate the changes in the cell cycle underlying erythroid maturation. EKLF activates p21 not only by directly binding to an EKLF site within a previously characterized GC-rich region in the p21 proximal promoter but also by occupancy at a novel, phylogenetically conserved region that contains consensus CACCC core motifs located downstream from the p21 TATA box. Our findings demonstrate that EKLF, likely in coordination with other transcription factors, directly contributes to the complex set of events that occur at the final erythroid cell divisions and accentuates terminal differentiation directly by activation of CDK inhibitors such as p21.
机译:在红细胞生成的终末阶段从增殖到分化的转换是一个严格控制的过程,该过程部分取决于转录因子介导的细胞周期成分的激活。 EKLF是初始建立红细胞表型所必需的关键转录因子。在这里,我们发现EKLF在随后的分化过程中也起着作用,因为它诱导独立于p53的p21WAF1 / CIP1表达来调节红系成熟所需的细胞周期变化。 EKLF不仅通过直接结合到p21近端启动子中先前表征的富含GC的区域内的EKLF位点来激活p21,而且还通过占据一个新颖的,系统发育上保守的区域占据该区域,该区域包含位于p21 TATA盒下游的共有CACCC核心基序。我们的发现表明,EKLF可能与其他转录因子协同作用,直接促成最终红细胞分裂时发生的复杂事件,并通过激活CDK抑制剂(如p21)直接加重了终末分化。

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