UCP2上调可增加皮肤细胞转化过程中Fra-1的表达和s期细胞群,但不减少细胞凋亡

Yunfeng Zhao, Annapoorna Sreedhar, Chunjing Zhang, Noel Jacquet
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摘要

解偶联蛋白2 (UCP2)的上调被认为是促进癌细胞存活的机制。这种促进生存的功能被认为是由UCP2的解偶联活性介导的,它减少了线粒体中超氧化物的产生。然而,在肿瘤发生早期,高表达的UCP2究竟是如何调控细胞增殖、细胞周期和细胞死亡的,目前还没有深入的研究。为此,我们制作了UCP2稳定过表达的JB6 Cl-41细胞(一种皮肤细胞转化模型),并进行了研究来回答上述问题。我们的研究结果表明,UCP2过表达增强了细胞增殖、癌蛋白Fra-1的激活、锚定非依赖性生长、3D球体生长和皮肤细胞转化过程中的葡萄糖摄取。接下来,我们的研究结果表明,UCP2过表达导致细胞周期G1期细胞比例明显减少,S期细胞比例明显增加,同时Cyclin E和Cdk2的表达增加。最后,Annexin V和活性caspase 3/7染色显示,UCP2过表达不增强或抑制皮肤细胞转化过程中的凋亡。综上所述,这些数据表明UCP2上调主要增强了驱动细胞增殖的Fra-1致癌途径,而不抑制皮肤细胞转化过程中的凋亡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
UCP2 Upregulation Increases Fra-1 Expression and S-phase Cell Population without Decreasing Apoptosis during Skin Cell Transformation
Upregulation of uncoupling protein 2 (UCP2) is considered a prosurvival mechanism for cancer cells. This prosurvival function is thought to be mediated by UCP2’s uncoupling activity which reduces the production of superoxide in the mitochondria. However, exactly how highly expressed UCP2 regulates cell proliferation, cell cycle, and cell death during the early stage of tumorigenesis has not been studied thoroughly. For this purpose, we generated UCP2 stably overexpressed JB6 Cl-41 cells (a skin cell transformation model) and performed studies to answer the above questions. Our results demonstrated that UCP2 overexpression enhanced cell proliferation, activation of the oncoprotein Fra-1, anchorage-independent growth, 3D spheroids growth, and glucose uptake during skin cell transformation. Next, our results demonstrated that UCP2 overexpression resulted in marked decreases in the proportion of the cells in the G1 phase and an increase of cells in the S phase of the cell cycle, which was accompanied by increased expression of Cyclin E and Cdk2. Lastly, UCP2 overexpression did not enhance or suppress apoptosis during skin cell transformation, as indicated by Annexin V and active caspase 3/7 staining. Taken together, these data suggest that UCP2 upregulation mainly enhances the Fra-1 oncogenic pathway which drives cell proliferation, without inhibiting apoptosis during skin cell transformation.
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