Torres Vicente A, Tapia Julio C, Rodriguez Diego A, Lladser Alvaro, Arredondo Cristian, Leyton Lisette, Quest Andrew F G
FONDAP Center for Molecular Studies of the Cell, Facultad de Medicina, Universidad de Chile, Av. Independencia 1027, Santiago, Chile.
Mol Cell Biol. 2007 Nov;27(21):7703-17. doi: 10.1128/MCB.01991-06. Epub 2007 Sep 4.
Caveolin-1 reportedly acts as a tumor suppressor and promotes events associated with tumor progression, including metastasis. The molecular mechanisms underlying such radical differences in function are not understood. Recently, we showed that caveolin-1 inhibits expression of the inhibitor of apoptosis protein survivin via a transcriptional mechanism involving the beta-catenin-Tcf/Lef pathway. Surprisingly, while caveolin-1 expression decreased survivin mRNA and protein levels in HT29(ATCC) human colon cancer cells, this was not the case in metastatic HT29(US) cells. Survivin down-regulation was paralleled by coimmunoprecipitation and colocalization of caveolin-1 with beta-catenin in HT29(ATCC) but not HT29(US) cells. Unlike HT29(ATCC) cells, HT29(US) cells expressed small amounts of E-cadherin that accumulated in intracellular patches rather than at the cell surface. Re-expression of E-cadherin in HT29(US) cells restored the ability of caveolin-1 to down-regulate beta-catenin-Tcf/Lef-dependent transcription and survivin expression, as seen in HT29(ATCC) cells. In addition, coimmunoprecipitation and colocalization between caveolin-1 and beta-catenin increased upon E-cadherin expression in HT29(US) cells. In human embryonic kidney HEK293T and HT29(US) cells, caveolin-1 and E-cadherin cooperated in suppressing beta-catenin-Tcf/Lef-dependent transcription as well as survivin expression. Finally, mouse melanoma B16-F10 cells, another metastatic cell model with low endogenous caveolin-1 and E-cadherin levels, were characterized. In these cells, caveolin-1-mediated down-regulation of survivin in the presence of E-cadherin coincided with increased apoptosis. Thus, the absence of E-cadherin severely compromises the ability of caveolin-1 to develop activities potentially relevant to its role as a tumor suppressor.
据报道,小窝蛋白-1作为一种肿瘤抑制因子,却促进包括转移在内的与肿瘤进展相关的事件。这种功能上的巨大差异背后的分子机制尚不清楚。最近,我们发现小窝蛋白-1通过涉及β-连环蛋白-Tcf/Lef途径的转录机制抑制凋亡抑制蛋白生存素的表达。令人惊讶的是,虽然小窝蛋白-1的表达降低了HT29(ATCC)人结肠癌细胞中生存素的mRNA和蛋白质水平,但在转移性HT29(美国)细胞中却并非如此。在HT29(ATCC)细胞而非HT29(美国)细胞中,生存素的下调与小窝蛋白-1与β-连环蛋白的共免疫沉淀和共定位平行。与HT29(ATCC)细胞不同,HT29(美国)细胞表达少量的E-钙黏蛋白,这些E-钙黏蛋白聚集在细胞内斑块而非细胞表面。在HT29(美国)细胞中重新表达E-钙黏蛋白恢复了小窝蛋白-1下调β-连环蛋白-Tcf/Lef依赖性转录和生存素表达的能力,正如在HT29(ATCC)细胞中所见。此外,在HT29(美国)细胞中,E-钙黏蛋白表达后,小窝蛋白-1与β-连环蛋白之间的共免疫沉淀和共定位增加。在人胚肾HEK293T细胞和HT29(美国)细胞中,小窝蛋白-1和E-钙黏蛋白协同抑制β-连环蛋白-Tcf/Lef依赖性转录以及生存素表达。最后,对小鼠黑色素瘤B16-F10细胞进行了表征,这是另一种内源性小窝蛋白-1和E-钙黏蛋白水平较低的转移细胞模型。在这些细胞中,在存在E-钙黏蛋白的情况下,小窝蛋白-1介导的生存素下调与凋亡增加同时发生。因此,E-钙黏蛋白的缺失严重损害了小窝蛋白-1发挥与其作为肿瘤抑制因子作用潜在相关活性的能力。