Cerezo Ana, Guadamillas Marta C, Goetz Jacky G, Sánchez-Perales Sara, Klein Eric, Assoian Richard K, del Pozo Miguel A
Integrin Signaling Laboratory, Department of Vascular Biology and Inflammation, Centro Nacional de Investigaciones Cardiovasculares, Melchor Fernández Almagro 3, Madrid, Spain.
Mol Cell Biol. 2009 Sep;29(18):5046-59. doi: 10.1128/MCB.00315-09. Epub 2009 Jul 20.
Anchorage-independent growth (AIG) of cancer cells requires escape from integrin-mediated signals. A protein frequently downregulated in cancer, caveolin-1 (Cav1), mediates integrin control of several growth-regulatory pathways. We report that loss of Cav1 results in faster exit from quiescence and progress through the cell cycle, proliferation without anchorage to substrate, and absence of cyclin D1 downregulation upon serum deprivation or detachment. Surprisingly, this proliferative advantage is independent of Erk-mitogen-activated protein kinase signaling; instead, cyclin expression and cell cycle progression in the absence of Cav1 are driven by increased membrane order and Rac targeting. AIG was induced in Cav1-expressing cells by forced membrane targeting of Rac1 or by inhibiting Cav1-mediated internalization of plasma membrane ordered domains at which Rac1 accumulates. Restoring Rho activity, which is downregulated after loss of Cav1, antagonizes Rac1 and prevents cyclin D1 accumulation after serum starvation or loss of adhesion. Anchorage independence and increased proliferation in Cav1-deficient tumoral and null cells are thus due to an increased fraction of active Rac1 at membrane ordered domains. These results provide insight into the mechanisms regulating growth of cancer cells, which frequently lose Cav1 function.
癌细胞的不依赖贴壁生长(AIG)需要摆脱整合素介导的信号。一种在癌症中经常下调的蛋白质,小窝蛋白-1(Cav1),介导整合素对多种生长调节途径的控制。我们报告称,Cav1的缺失导致更快地退出静止期并通过细胞周期进展,在不贴壁于底物的情况下增殖,以及在血清剥夺或脱离时细胞周期蛋白D1不发生下调。令人惊讶的是,这种增殖优势独立于Erk-丝裂原活化蛋白激酶信号传导;相反,在没有Cav1的情况下,细胞周期蛋白的表达和细胞周期进展是由增加的膜有序性和Rac靶向驱动的。通过Rac1的强制膜靶向或通过抑制Cav1介导的Rac1积累的质膜有序结构域的内化,在表达Cav1的细胞中诱导了AIG。恢复Rho活性(在Cav1缺失后下调)可拮抗Rac1并防止血清饥饿或失去黏附后细胞周期蛋白D1的积累。因此,Cav1缺陷的肿瘤细胞和缺失细胞中的不依赖贴壁生长和增殖增加是由于膜有序结构域中活性Rac1的比例增加。这些结果为调节癌细胞生长的机制提供了见解,癌细胞经常失去Cav1功能。