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Activation of p107 by Fibroblast Growth Factor, Which Is Essential for Chondrocyte Cell Cycle Exit, Is Mediated by the Protein Phosphatase 2A/B55α Holoenzyme

机译:软骨细胞周期退出所必需的成纤维细胞生长因子对p107的激活是由蛋白磷酸酶2A /B55α全酶介导的

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The phosphorylation state of pocket proteins during the cell cycle is determined at least in part by an equilibrium between inducible cyclin-dependent kinases (CDKs) and serine/threonine protein phosphatase 2A (PP2A). Two trimeric holoenzymes consisting of the core PP2A catalytic/scaffold dimer and either the B55α or PR70 regulatory subunit have been implicated in the activation of p107/p130 and pRB, respectively. While the phosphorylation state of p107 is very sensitive to forced changes of B55α levels in human cell lines, regulation of p107 in response to physiological modulation of PP2A/B55α has not been elucidated. Here we show that fibroblast growth factor 1 (FGF1), which induces maturation and cell cycle exit in chondrocytes, triggers rapid accumulation of p107-PP2A/B55α complexes coinciding with p107 dephosphorylation. Reciprocal solution-based mass spectrometric analysis identified the PP2A/B55α complex as a major component in p107 complexes, which also contain E2F/DPs, DREAM subunits, and/or cyclin/CDK complexes. Of note, p107 is one of the preferred partners of B55α, which also associates with pRB in RCS cells. FGF1-induced dephosphorylation of p107 results in its rapid accumulation in the nucleus and formation of larger complexes containing p107 and enhances its interaction with E2F4 and other p107 partners. Consistent with a key role of B55α in the rapid activation of p107 in chondrocytes, limited ectopic expression of B55α results in marked dephosphorylation of p107 while B55α knockdown results in hyperphosphorylation. More importantly, knockdown of B55α dramatically delays FGF1-induced dephosphorylation of p107 and slows down cell cycle exit. Moreover, dephosphorylation of p107 in response to FGF1 treatment results in early recruitment of p107 to the MYC promoter, an FGF1/E2F-regulated gene. Our results suggest a model in which FGF1 mediates rapid dephosphorylation and activation of p107 independently of the CDK activities that maintain p130 and pRB hyperphosphorylation for several hours after p107 dephosphorylation in maturing chondrocytes.
机译:口袋蛋白在细胞周期中的磷酸化状态至少部分取决于诱导型细胞周期蛋白依赖性激酶(CDKs)和丝氨酸/苏氨酸蛋白磷酸酶2A(PP2A)之间的平衡。由核心PP2A催化/支架二聚体和B55α或PR70调节亚基组成的两个三聚全酶分别与p107 / p130和pRB的活化有关。尽管p107的磷酸化状态对人类细胞系中B55α水平的强制变化非常敏感,但尚未阐明响应于PP2A /B55α的生理调节而对p107的调节。在这里,我们显示成纤维细胞生长因子1(FGF1)诱导软骨细胞成熟和细胞周期退出,触发p107-PP2A /B55α复合物的快速积累,与p107的去磷酸化相吻合。基于互易解决方案的质谱分析确定PP2A /B55α复合物是p107复合物中的主要成分,p107复合物中也包含E2F / DP,DREAM亚基和/或cyclin / CDK复合物。值得注意的是,p107是B55α的优选伴侣之一,它也与RCS细胞中的pRB相关。 FGF1诱导的p107的去磷酸化导致其在细胞核中快速积累并形成包含p107的较大复合物,并增强了其与E2F4和其他p107伴侣的相互作用。与B55α在软骨细胞中p107的快速活化中的关键作用相一致,B55α的有限异位表达导致p107明显去磷酸化,而B55α敲低则导致过度磷酸化。更重要的是,B55α的敲低显着延迟了FGF1诱导的p107的去磷酸化,并减慢了细胞周期的退出。此外,响应FGF1处理的p107的去磷酸化导致p107早期募集到 MYC 启动子(一个受FGF1 / E2F调控的基因)。我们的结果提出了一个模型,其中FGF1介导快速的去磷酸化和p107的活化,而与CDK活性无关,后者在成熟的软骨细胞中的p107去磷酸化后的几个小时内保持p130和pRB的过度磷酸化。

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