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在从G1期向G0期转变过程中,p130的G1期细胞周期蛋白/细胞周期蛋白依赖性激酶非依赖性磷酸化和积累导致其与E2F-4结合。

G1 cyclin/CDK-independent phosphorylation and accumulation of p130 during the transition from G1 to G0 lead to its association with E2F-4.

作者信息

Mayol X, Garriga J, Graña X

机构信息

Fels Institute for Cancer Research and Molecular Biology, Temple University School of Medicine, Philadelphia, Pennsylvania 19140, USA.

出版信息

Oncogene. 1996 Jul 18;13(2):237-46.

PMID:8710362
Abstract

During the transition from G1 to G0, p130 undergoes a specific phosphorylation event-leading to p130-form 2- that is mediated by a kinase/s other than the known G1, S and G2/M cyclin/CDKs. Changes in the phosphorylation status of p130 during this transition are responsible, at least in part, for the concomitant formation of p130/E2F-4 complexes, which are characteristic of G0. These complexes remain abundant during early G1 upon restimulation, but not after mitosis, and are dissociated in mid G1 when p130 is abruptly hyperphosphorylated to form 3. Subsequently, p130 forms 1 and 2 are no longer detected during the remainder of the cell cycle. Consistently, phosphorylation to form 3 and dissociation from E2F-4 complexes is reproduced by a cyclin/CDK holoenzyme in vitro. TGF-beta-induced G1 arrest abrogates cyclin/CDK phosphorylation of p130 but not phosphorylation to form 2. The cell cycle-dependent phosphorylation pattern of p130 is thus shown to comprise two distinct steps that are catalyzed by different kinases. The differential regulation of p130 and pRB phosphorylation during the transition from G1 to G0 may explain the fact that p130 and E2F-4 are the major components of E2F complexes in quiescent cells. Moreover, the newly described phosphorylation of p130 at the transition from G1 to G0 defines a novel mechanism of cell cycle exit regulation.

摘要

在从G1期向G0期转变的过程中,p130会经历一个特定的磷酸化事件,从而产生p130形式2,这一过程由已知的G1期、S期和G2/M期细胞周期蛋白/周期蛋白依赖性激酶(CDK)以外的一种或多种激酶介导。在此转变过程中,p130磷酸化状态的变化至少部分导致了p130/E2F-4复合物的同时形成,而这种复合物是G0期的特征。在重新刺激后的G1早期,这些复合物仍然大量存在,但在有丝分裂后则不然,并且在G1中期当p130突然过度磷酸化形成形式3时会解离。随后,在细胞周期的其余阶段不再检测到p130形式1和形式2。一致的是,在体外,细胞周期蛋白/CDK全酶可重现p130磷酸化形成形式3并从E2F-4复合物中解离的过程。转化生长因子β(TGF-β)诱导的G1期停滞可消除细胞周期蛋白/CDK对p130的磷酸化作用,但不会消除形成形式2的磷酸化作用。因此,p130的细胞周期依赖性磷酸化模式显示由不同激酶催化的两个不同步骤组成。从G1期向G0期转变过程中p130和视网膜母细胞瘤蛋白(pRB)磷酸化的差异调节可能解释了p130和E2F-4是静止细胞中E2F复合物主要成分这一事实。此外,新描述的从G1期向G0期转变过程中p130的磷酸化定义了一种新的细胞周期退出调节机制。

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