Kong Hee Jeong, Yu Hyun Jung, Hong SunHwa, Park Min Jung, Choi Young Hyun, An Won Gun, Lee Jae Woon, Cheong JaeHun
Laboratory of Molecular Growth Regulation, National Institute of Health, Bethesda, MD, USA.
Mol Cancer Res. 2003 Nov;1(13):948-58.
Activating signal cointegrator-2 (ASC-2), a novel coactivator, is amplified in several cancer cells and known to interact with mitogenic transcription factors, including serum response factor, activating protein-1, and nuclear factor-kappaB, suggesting the physiological role of ASC-2 in the promotion of cell proliferation. Here, we show that the expression pattern of ASC-2 was correlated with that of E2F-1 for protein increases at G(1) and S phase. Furthermore, cells stably overexpressing ASC-2 had an increased cell proliferation profile. These results prompted us to examine the functional interaction of ASC-2 and E2F-1. Biochemical evidence of protein interaction indicated that the transactivation domain of E2F-1 interacted with the COOH-terminal region of ASC-2. The importance of the E2F-1-ASC-2 interaction was supported by the demonstration that the coexpression of ASC-2 and E2F-1 synergistically transactivated E2F-1-driven gene transcription and the acetylation of E2F-1 protein was necessary for ASC-2-mediated transcriptional coactivation. Interestingly, overexpression of ASC-2 increased the endogenous protein level of E2F-1 in cells, resulting from the prolonged protein stability of E2F-1. Taken together, these results suggest that the cancer-amplified transcriptional coactivator ASC-2 may promote cell proliferation through enhancement of E2F-1-dependent transactivation of the expression of genes associated with cell cycle progression that may be available to favor tumor growth in vivo.
激活信号共整合因子2(ASC-2)是一种新型共激活因子,在多种癌细胞中呈扩增状态,已知其可与促有丝分裂转录因子相互作用,包括血清反应因子、激活蛋白-1和核因子-κB,这提示了ASC-2在促进细胞增殖中的生理作用。在此,我们发现ASC-2的表达模式在G1期和S期与E2F-1的蛋白表达增加相关。此外,稳定过表达ASC-2的细胞具有更高的细胞增殖水平。这些结果促使我们研究ASC-2与E2F-1的功能相互作用。蛋白质相互作用的生化证据表明,E2F-1的反式激活结构域与ASC-2的COOH末端区域相互作用。ASC-2和E2F-1共表达协同反式激活E2F-1驱动的基因转录,且E2F-1蛋白的乙酰化对于ASC-2介导的转录共激活是必需的,这一结果支持了E2F-1-ASC-2相互作用的重要性。有趣的是,ASC-2的过表达增加了细胞中E2F-1的内源性蛋白水平,这是由于E2F-1蛋白稳定性延长所致。综上所述,这些结果表明,癌症中扩增的转录共激活因子ASC-2可能通过增强与细胞周期进程相关基因的E2F-1依赖性反式激活来促进细胞增殖,这可能有利于体内肿瘤生长。