哺乳动物细胞中的G1控制。

S I Reed, E Bailly, V Dulic, L Hengst, D Resnitzky, J Slingerland
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引用次数: 174

摘要

细胞周期蛋白依赖性激酶(Cdks)控制真核细胞的主要细胞周期转变。基于周期蛋白功能受损或增强的各种实验,d型周期蛋白以及周期蛋白E和a与哺乳动物细胞的G1和G1/S期作用有关。因此,我们试图确定阻断G1/S相变的药物是否在调节与这些细胞周期蛋白相关的Cdk活性的水平上起作用。各种导致G1停滞的条件被发现与G1特异性Cdk抑制剂的积累相关,包括用电离辐射治疗成纤维细胞,用tgf - β治疗上皮细胞,用药物洛伐他汀治疗HeLa细胞,以及从各种不同细胞类型中去除必需生长因子。机制上,Cdks的抑制被发现涉及Cdk抑制剂蛋白的化学计量结合。p21Waf1/Cip1与DNA损伤诱导的阻滞有关,而p27Kip1/p28Ick1在各种抗增殖条件下积累。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
G1 control in mammalian cells.

Cyclin-dependent kinases (Cdks) control the major cell cycle transitions in eukaryotic cells. On the basis of a variety of experiments where cyclin function either is impaired or enhanced, D-type cyclins as well as cyclins E and A have been linked to G1 and G1/S phase roles in mammalian cells. We therefore sought to determine if agents that block the G1/S phase transition do so at the level of regulating the Cdk activities associated with these cyclins. A variety of conditions that lead to G1 arrest were found to correlate with accumulation of G1-specific Cdk inhibitors, including treatment of fibroblasts with ionizing radiation, treatment of epithelial cells with TGF-beta, treatment of HeLa cells with the drug lovastatin, and removal of essential growth factors from a variety of different cell types. Mechanistically, inhibition of Cdks was found to involve the stoichiometric binding of Cdk inhibitor proteins. p21Waf1/Cip1 was associated with DNA damage induced arrest while p27Kip1/p28Ick1 accumulated under a variety of antiproliferative conditions.

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