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Different transcriptional strategies for ccn2/ctgf gene induction between human chondrocytic and breast cancer cell lines

机译:软骨细胞和乳腺癌细胞系之间ccn2 / ctgf基因诱导的不同转录策略

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Connective tissue growth factor (CTGF/CCN2) plays a critical role in endochondral bone formation; however, CCN2 also promotes angio-genesis and bone metastasis in breast cancer. Chondrocytic HCS-2/8 cells and breast cancer MDA231 cells produce over 6 times more CCN2 than any other cell type. In this study, we demonstrate that these cell lines employ different transcriptional strategies for ccn2 gene induction. Four tandem copies of the dominant transcriptional enhancer in chondrocytes (4 x TRENDIC) were chimerically connected to an SV40 pro-moter-luciferase construct and subsequently analyzed. The enhancement of the promoter activity by 4 x TRENDIC was greater in the HCS-2/8 cells (7-fold) than in the other 4 cell lines (3-4 fold). The TRENDIC-binding protein complex was detected at a higher signal in the HCS-2/8 cells than in the other cell lines. In addition, the HCS-2/8 nuclear factors strongly targeted not only TRENDIC, but also the previously reported basal control element and a novel enhancer element in the ccn2 promoter. In contrast, high-level ccn2 gene induction in MDA231 cells was largely dependent on Smad signaling through the Smad-binding element in the ccn2 promoter. Based on these results, we propose a model of differential transcription of the ccn2 gene between the chondrocytic cell line and the breast cancer cell line, and therefore imply that these cells utilize distinct transcriptional strategies to obtain the enhanced CCN2 production that is not observed in other types of cells.
机译:结缔组织生长因子(CTGF / CCN2)在软骨内骨形成中起关键作用;然而,CCN2也促进乳腺癌的血管生成和骨转移。软骨细胞HCS-2 / 8细胞和乳腺癌MDA231细胞产生的CCN2比任何其他细胞类型高6倍以上。在这项研究中,我们证明了这些细胞系采用不同的转录策略诱导ccn2基因。将软骨细胞中的优势转录增强子的四个串联拷贝(4 x TRENDIC)嵌合连接至SV40启动子荧光素酶构建体,然后进行分析。在HCS-2 / 8细胞中,启动子活性通过4 x TRENDIC的增强作用更大(7倍),而在其他4种细胞系中则更高(3-4倍)。在HCS-2 / 8细胞中检测到的TRENDIC结合蛋白复合物信号强度高于其他细胞系。另外,HCS-2 / 8核因子不仅针对TRENDIC,而且还针对ccn2启动子中先前报道的基础控制元件和新型增强子。相反,MDA231细胞中的高水平ccn2基因诱导很大程度上取决于ccn2启动子中Smad结合元件的Smad信号传导。基于这些结果,我们提出了软骨细胞系和乳腺癌细胞系之间ccn2基因差异转录的模型,因此暗示这些细胞利用独特的转录策略来获得增强的CCN2产生,而在其他细胞中没有观察到细胞类型。

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