首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >C/EBPδ targets cyclin D1 for proteasome-mediated degradation via induction of CDC27/APC3 expression
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C/EBPδ targets cyclin D1 for proteasome-mediated degradation via induction of CDC27/APC3 expression

机译:C /EBPδ通过诱导CDC27 / APC3表达,将细胞周期蛋白D1靶向蛋白酶体介导的降解

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The transcription factor CCAAT/enhancer binding protein δ (C/EBPδ, CEBPD, NFIL-6β) has tumor suppressor function; however, the molecular mechanism(s) by which C/EBPδ exerts its effect are largely unknown. Here, we report that C/EBP8 induces expression of the Cdc27 (APC3) subunit of the anaphase promoting complex/cyclosome (APC/C), which results in the polyubiquitination and degradation of the prooncogenic cell cycle regulator cyclin D1, and also down-regulates cyclin B1, Skp2, and Plk-1. In C/EBPS knockout mouse embryo fibroblasts (MEF) Cdc27 levels were reduced, whereas cyclin D1 levels were increased even in the presence of activated GSK-3β. Silencing of C/EBPδ, Cdc27, or the APC/C coactivator Cdh1 (FZR1) in MCF-10A breast epithelial cells increased cyclin D1 protein expression. Like C/EBPδ, and in contrast to cyclin D1, Cdc27 was down-regulated in several breast cancer cell lines, suggesting that Cdc27 itself may be a tumor suppressor. Cyclin D1 is a known substrate of polyubiquitination complex SKP1/CUL1/F-box (SCF), and our studies show that Cdc27 directs cyclin D1 to alternative degradation by APC/C. These findings shed light on the role and regulation of APC/C, which is critical for most cellular processes.
机译:转录因子CCAAT /增强子结合蛋白δ(C /EBPδ,CEBPD,NFIL-6β)具有抑癌作用。但是,C /EBPδ发挥其作用的分子机制尚不清楚。在这里,我们报道了C / EBP8诱导后期促进复合物/环体(APC / C)的Cdc27(APC3)亚基的表达,这导致促原性细胞周期调节因子cyclin D1的多泛素化和降解,并且还降低了调节细胞周期蛋白B1,Skp2和Plk-1。在C / EBPS基因敲除的小鼠胚胎成纤维细胞(MEF)中,即使存在活化的GSK-3β,Cdc27水平也降低,而细胞周期蛋白D1水平则升高。沉默MCF-10A乳腺癌上皮细胞中的C /EBPδ,Cdc27或APC / C共激活因子Cdh1(FZR1)可增加细胞周期蛋白D1蛋白的表达。像C /EBPδ一样,与细胞周期蛋白D1相比,Cdc27在几种乳腺癌细胞系中均下调,表明Cdc27本身可能是抑癌基因。细胞周期蛋白D1是已知的多泛素化复合物SKP1 / CUL1 / F-box(SCF)的底物,我们的研究表明Cdc27指导细胞周期蛋白D1通过APC / C选择性降解。这些发现揭示了APC / C的作用和调节,这对大多数细胞过程至关重要。

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