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首页> 外文期刊>Journal of cellular biochemistry. >The cyclin-dependent kinase inhibitor roscovitine inhibits kinase activity, cell proliferation, multicellular development, and Cdk5 nuclear translocation in Dictyostelium discoideum
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The cyclin-dependent kinase inhibitor roscovitine inhibits kinase activity, cell proliferation, multicellular development, and Cdk5 nuclear translocation in Dictyostelium discoideum

机译:细胞周期蛋白依赖性激酶抑制剂roscovitine抑制Disctyostelium Discoideum中的激酶活性,细胞增殖,多细胞发育和Cdk5核易位

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Roscovitine, a cyclin-dependent kinase (Cdk) inhibitor, inhibited kinase activity and the axenic growth of Dictyostelium discoideum at micromolar concentrations. Growth was almost fully rescued in 50 μM and ~50% rescued in 100 μ Mroscovitine-treated cultures by the overexpression of Cdk5-GFP. This supports the importance of Cdk5 function during cell proliferation in Dictyostelium and indicates that Cdk5 is a primary target of the drug. Roscovitine did not affect the expression of Cdk5 protein during axenic growth but did inhibit its nuclear translocation. This novel result suggests that the effects of roscovitine could be due in part to altering Cdk5 translocation in other systems as well. Kinase activity was inhibited by roscovitine in assays using AX3 whole cell lysates, but not in assays using lysates from Cdk5-GFP overexpressing cells. At higher concentrations, roscovitine impaired slug and fruiting body formation. Fruiting bodies that did form were small and produced relatively fewer spores many of which were round. However, roscovitine did not affect stalk cell differentiation. Together with previous findings, these data reveal that roscovitine inhibits Cdk5 during growth and as yet undefined Cdks during mid-late development.
机译:Roscovitine是一种细胞周期蛋白依赖性激酶(Cdk)抑制剂,在微摩尔浓度下抑制Disctyostelium discoideum的激酶活性和其轴突生长。通过Cdk5-GFP的过表达,在50μM中几乎可以完全挽救生长,在100μMroscovitine处理的培养物中可以挽救约50%的生长。这支持了在网柄菌属细胞增殖过程中Cdk5功能的重要性,并表明Cdk5是该药物的主要靶标。 roscovitine不会影响Cdk5蛋白在轴突生长过程中的表达,但会抑制其核转运。这个新颖的结果表明,roscovitine的影响也可能部分归因于其他系统中Cdk5易位的改变。在使用AX3全细胞裂解物的测定中,roscovitine抑制激酶活性,但在使用Cdk5-GFP过表达细胞的裂解物的测定中,激酶活性不受抑制。在更高的浓度下,罗斯科维汀会破坏团块和子实体的形成。确实形成的子实体很小,产生的孢子相对较少,其中许多是圆形的。但是,roscovitine不会影响茎细胞分化。连同以前的发现,这些数据表明roscovitine在生长过程中抑制Cdk5,而在中晚期发育过程中仍未确定Cdks。

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