首页> 外文期刊>Cell Growth & Differentiation: The Molecular Biology Journal of the American Association for Cancer Research >Stem cell factor inhibits erythroid differentiation by modulating the activity of G1-cyclin-dependent kinase complexes: a role for p27 in erythroid differentiation coupled G1 arrest.
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Stem cell factor inhibits erythroid differentiation by modulating the activity of G1-cyclin-dependent kinase complexes: a role for p27 in erythroid differentiation coupled G1 arrest.

机译:干细胞因子通过调节G1细胞周期蛋白依赖性激酶复合物的活性来抑制红系分化:p27在红系分化中的作用与G1阻滞有关。

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Terminal erythroid differentiation is accompanied by decreased expression of c-Kit and decreased proliferation of erythroid progenitor cells. Using a newly established erythroleukemia cell line HB60-5, which proliferates in response to erythropoietin (Epo) and stem cell factor (SCF) and differentiates when stimulated with Epo alone, we characterized several events associated with the cell cycle during erythroid differentiation. Forty-eight h after SCF withdrawal and Epo stimulation, there was strong inhibition of cyclin-dependent kinase (cdk) 4 and cdk6 activities, associated with an increase in the binding of p27 and p15 to cdk6. A significant increase in the binding of p27 to cyclin E- and cyclin A-associated cdk2 correlated with the inhibition of these kinases. In addition, the expression of c-Myc and its downstream transcriptional target Cdc25A were found to be down-regulated during Epo-induced terminal differentiation of HB60-5 cells. The loss of Cdc25A was associated with an increase in the phosphotyrosylation of cyclin E-associated cdk2, which may contribute to cell cycle arrest during differentiation. Although overexpression of p27 in HB60-5 cells caused G1 arrest, it did not promote terminal erythroid differentiation. Thus, the cell cycle arrest that involves p27 is part of a broader molecular program during HB60-5 erythroid differentiation. Moreover, we suggest that SCF stimulation of erythroblasts, in addition to inhibiting erythroid differentiation, activates parallel or sequential signals responsible for maintaining cyclin/cdk activity.
机译:晚期红系分化伴随着c-Kit表达的降低和红系祖细胞增殖的降低。使用新建立的红细胞白血病细胞株HB60-5,其响应促红细胞生成素(Epo)和干细胞因子(SCF)增殖并在单独受Epo刺激时分化,我们表征了与红系分化过程中细胞周期相关的几个事件。 SCF撤离和Epo刺激后48小时,强烈抑制细胞周期蛋白依赖性激酶(cdk)4和cdk6活性,与p27和p15与cdk6的结合增加有关。 p27与细胞周期蛋白E-和细胞周期蛋白A相关的cdk2的结合的显着增加与这些激酶的抑制有关。此外,发现在Epo诱导的HB60-5细胞终末分化过程中,c-Myc及其下游转录靶Cdc25A的表达下调。 Cdc25A的损失与细胞周期蛋白E相关的cdk2的磷酸酪氨酰化增加有关,这可能有助于分化过程中的细胞周期停滞。尽管HB60-5细胞中p27的过表达引起G1阻滞,但它并未促进终末红系分化。因此,涉及p27的细胞周期停滞是HB60-5红系分化过程中更广泛的分子程序的一部分。此外,我们建议SCF刺激的成红细胞,除了抑制红系分化,还激活负责维持细胞周期蛋白/ cdk活性的平行或顺序信号。

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