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p27(Kip1)在体内维持D型细胞周期蛋白水平中的作用。

The role of p27(Kip1) in maintaining the levels of D-type cyclins in vivo.

作者信息

Bryja Vítezslav, Pacherník Jirí, Faldíková Ludmila, Krejcí Pavel, Pogue Robert, Nevrivá Iveta, Dvorák Petr, Hampl Ales

机构信息

Center for Cell Therapy and Tissue Repair, Charles University, Prague, Czech Republic.

出版信息

Biochim Biophys Acta. 2004 May 3;1691(2-3):105-16. doi: 10.1016/j.bbamcr.2004.01.001.

Abstract

This in vivo study employs p27-deficient mice to investigate the significance of p27 for the metabolism of D-type cyclins in differentiated cells. The absence of p27 results in decreased levels of cyclins D2 and/or D3 in some organs. As demonstrated on Leydig cells of testis, such dependency is only restricted to certain cell types including terminally differentiated ones, and the absence of p27 in these cells can interfere with their differentiation. The decrease of cyclin D caused by the absence of p27 equals the amount of cyclin D physically associated with p27 in non-mutant animals. The data indicate that it is the proportion of p27-associated cyclin D that determines the response to p27 deficiency. Cells in which the level of D-type cyclin is dependent on p27 do not up-regulate the activity of their CDK2 and CDK4 upon loss of p27, and these cells have a negligible amount of p27 bound to CDK2 and/or cyclin A/E under normal conditions. Together, the findings suggest the existence of a dual role for p27, one being a classical regulation of cell cycle via inhibition of cyclin-dependent kinases (CDK), and the other being participation in the establishment and/or maintenance of differentiated status that is realized in conjunction with D-type cyclins.

摘要

这项体内研究利用p27基因缺陷小鼠来探究p27对分化细胞中D型细胞周期蛋白代谢的重要性。p27的缺失导致某些器官中细胞周期蛋白D2和/或D3水平降低。正如在睾丸的Leydig细胞上所证明的那样,这种依赖性仅局限于某些细胞类型,包括终末分化细胞,并且这些细胞中p27的缺失会干扰它们的分化。p27缺失导致的细胞周期蛋白D的减少量与非突变动物中与p27物理结合的细胞周期蛋白D的量相等。数据表明,与p27结合的细胞周期蛋白D的比例决定了对p27缺陷的反应。D型细胞周期蛋白水平依赖于p27的细胞在p27缺失时不会上调其CDK2和CDK4的活性,并且在正常条件下这些细胞与CDK2和/或细胞周期蛋白A/E结合的p27量可以忽略不计。总之,这些发现表明p27存在双重作用,一种是通过抑制细胞周期蛋白依赖性激酶(CDK)对细胞周期进行经典调节,另一种是参与与D型细胞周期蛋白共同实现的分化状态的建立和/或维持。

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