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SSeCKS a Major Protein Kinase C Substrate with Tumor Suppressor Activity Regulates G1→S Progression by Controlling the Expression and Cellular Compartmentalization of Cyclin D

机译:SSeCKS具有肿瘤抑制活性的主要蛋白激酶C底物通过控制细胞周期蛋白D的表达和细胞分隔来调节G1→S的进程。

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摘要

SSeCKS, first isolated as a G1→S inhibitor that is downregulated in src- and ras-transformed cells, is a major cytoskeleton-associated PKC substrate with tumor suppressor and kinase-scaffolding activities. Previous attempts at constitutive expression resulted in cell variants with truncated ectopic SSeCKS products. Here, we show that tetracycline-regulated SSeCKS expression in NIH 3T3 cells induces G1 arrest marked by extracellular signal-regulated kinase 2-dependent decreases in cyclin D1 expression and pRb phosphorylation. Unexpectedly, the forced reexpression of cyclin D1 failed to rescue SSeCKS-induced G1 arrest. Confocal microscopy analysis revealed cytoplasmic colocalization of cyclin D1 with SSeCKS. Because the SSeCKS gene encodes two potential cyclin-binding motifs (CY) flanking major in vivo protein kinase C (PKC) phosphorylation sites (Ser507/515), we addressed whether SSeCKS encodes a phosphorylation-dependent cyclin scaffolding function. Bacterially expressed SSeCKS-CY bound cyclins D1 and E, whereas K→S mutations within either CY motif ablated binding. Activation of PKC in vivo caused a rapid translocation of cyclin D1 to the nucleus. Cell permeable, penetratin-linked peptides encoding wild-type SSeCKS-CY, but not K→S or phospho-Ser507/515 variants, released cyclin D1 from its cytoplasmic sequestration and induced higher saturation density in cyclin D1-overexpressor cells or rat embryo fibroblasts. Our data suggest that SSeCKS controls G1→S progression by regulating the expression and localization of cyclin D1. These data suggest that downregulation of SSeCKS in tumor cells removes gating checkpoints for saturation density, an effect that may promote contact independence.
机译:SSeCKS首先作为G1→S抑制剂被分离,在src和ras转化的细胞中被下调,它是一种主要的与细胞骨架相关的PKC底物,具有抑制肿瘤和抑制激酶的活性。先前对组成型表达的尝试导致具有异位SSeCKS产物被截短的细胞变异。在这里,我们显示出NIH 3T3细胞中四环素调节的SSeCKS表达诱导G1阻滞,其标志是细胞外信号调节激酶2依赖性细胞周期蛋白D1表达和pRb磷酸化降低。出乎意料的是,细胞周期蛋白D1的强制重新表达未能挽救SSeCKS诱导的G1阻滞。共聚焦显微镜分析显示细胞周期蛋白D1与SSeCKS的细胞质共定位。由于SSeCKS基因编码两个潜在的主要细胞内蛋白激酶C(PKC)磷酸化位点(Ser 507/515 )两侧的细胞周期蛋白结合基序(CY),因此我们探讨了SSeCKS是否编码依赖磷酸化的细胞周期蛋白脚手架功能。细菌表达的SSeCKS-CY结合细胞周期蛋白D1和E,而任一CY基序内的K→S突变均消除了结合。体内PKC的激活导致细胞周期蛋白D1迅速转移到细胞核。编码野生型SSeCKS-CY而不是K→S或磷酸Ser 507/515 变体的细胞渗透性与渗透素连接的肽,从细胞质螯合中释放细胞周期蛋白D1,并诱导细胞周期蛋白中更高的饱和密度D1过表达细胞或大鼠胚胎成纤维细胞。我们的数据表明,SSeCKS通过调节细胞周期蛋白D1的表达和定位来控制G1→S的进程。这些数据表明,肿瘤细胞中SSeCKS的下调消除了饱和密度的门控检查点,这种作用可能促进接触独立性。

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