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Tumor suppressor gene p16/INK4A/CDKN2A-dependent regulation into and out of the cell cycle in a spontaneous canine model of breast cancer

机译:肿瘤抑制基因p16 / INK4A / CDKN2A依赖性调控乳腺癌自发犬模型的细胞周期

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p16/INK4A/CDKN2A is an important tumor suppressor gene that arrests cell cycle in G1 phase inhibiting binding of CDK4/6 with cyclin D1, leaving the Rb tumor suppressor protein unphosphorylated and E2F bound and inactive. We hypothesized that p16 has a role in exit from cell cycle that becomes defective in cancer cells. Well characterized p16-defective canine mammary cancer cell lines (CMT28, CMT27, and CMT12), derived stably p16-transfected CMT cell clones (CMT27A, CMT27H, CMT28A, and CMT28F), and normal canine fibroblasts (NCF), were used to investigate expression of p16 after serum starvation into quiescence followed by re-feeding to induce cell cycle re-entry. The parental CMT cell lines used lack p16 expression either at the mRNA or protein expression levels, while p27 and other p16-associated proteins, including CDK4, CDK6, cyclin D1, and Rb, were expressed. We have successfully demonstrated cell cycle arrest and relatively synchronous cell cycle re-entry in parental CMT12, CMT28 and NCF cells as well as p16 transfected CMT27A, CMT27H, CMT28A, and CMT28F cells and confirmed this by 3H-thymidine incorporation and flow cytometric analysis of cell cycle phase distribution. p16-transfected CMT27A and CMT27H cells exited cell cycle post-serum-starvation in contrast to parental CMT27 cells. NCF, CMT27A, and CMT28F cells expressed upregulated levels of p27 and p16 mRNA, post-serum starvation, as cells exited cell cycle and entered quiescence. Because quiescence and differentiation are associated with increased levels of p27, our data demonstrating that p16 was upregulated along with p27 during quiescence, suggests a potential role for p16 in maintaining these non-proliferative states. J. Cell. Biochem. 114: 1355-1363, 2013.
机译:p16 / INK4A / CDKN2A是重要的抑癌基因,可在G1期阻止细胞周期,抑制CDK4 / 6与细胞周期蛋白D1的结合,而使Rb抑癌蛋白未磷酸化,而E2F结合且无活性。我们假设p16在细胞周期退出中发挥作用,而癌细胞的凋亡则成为缺陷。使用特性良好的p16缺陷犬乳腺癌细胞系(CMT28,CMT27和CMT12),稳定地转染p16的CMT细胞克隆(CMT27A,CMT27H,CMT28A和CMT28F)和正常犬成纤维细胞(NCF)进行研究血清饥饿进入静止后,p16的表达,然后重新喂食以诱导细胞周期重新进入。所用的亲代CMT细胞系在mRNA或蛋白质表达水平上均缺乏p16表达,而表达了p27和其他与p16相关的蛋白质,包括CDK4,CDK6,细胞周期蛋白D1和Rb。我们已经成功地证明了亲本CMT12,CMT28和NCF细胞以及p16转染的CMT27A,CMT27H,CMT28A和CMT28F细胞的细胞周期停滞和相对同步的细胞周期重入,并通过3H-胸苷掺入法和流式细胞仪分析证实了这一点。细胞周期的相位分布。与亲代CMT27细胞相比,p16转染的CMT27A和CMT27H细胞在血清饥饿后退出了细胞周期。随着血清退出细胞周期进入静止状态,NCF,CMT27A和CMT28F细胞在血清饥饿后表达上调的p27和p16 mRNA水平。由于静止和分化与p27的水平升高有关,因此我们的数据表明p16在静止期间与p27一起被上调,表明p16在维持这些非增殖状态中可能发挥作用。 J.细胞。生化。 114:1355-1363,2013。

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