Faggi Fiorella, Chiarelli Nicola, Colombi Marina, Mitola Stefania, Ronca Roberto, Madaro Luca, Bouche Marina, Poliani Pietro L, Vezzoli Marika, Longhena Francesca, Monti Eugenio, Salani Barbara, Maggi Davide, Keller Charles, Fanzani Alessandro
1] Department of Molecular and Translational Medicine, University of Brescia, Brescia, Italy [2] Interuniversity Institute of Myology (IIM), Rome, Italy.
Department of Molecular and Translational Medicine, University of Brescia, Brescia, Italy.
Lab Invest. 2015 Jun;95(6):585-602. doi: 10.1038/labinvest.2015.45. Epub 2015 Mar 30.
Rhabdomyosarcoma (RMS) is a childhood soft tissue tumor with broad expression of markers that are typically found in skeletal muscle. Cavin-1 is a recently discovered protein actively cooperating with Caveolin-1 (Cav-1) in the morphogenesis of caveolae and whose role in cancer is drawing increasing attention. Using a combined in silico and in vitro analysis here we show that Cavin-1 is expressed in myogenic RMS tumors as well as in human and primary mouse RMS cultures, exhibiting a broad subcellular localization, ranging from nuclei and cytosol to plasma membrane. In particular, the coexpression and plasma membrane interaction between Cavin-1 and Cav-1 characterized the proliferation of human and mouse RMS cell cultures, while a downregulation of their expression levels was observed during the myogenic differentiation. Knockdown of Cavin-1 or Cav-1 in the human RD and RH30 cells led to impairment of cell proliferation and migration. Moreover, loss of Cavin-1 in RD cells impaired the anchorage-independent cell growth in soft agar. While the loss of Cavin-1 did not affect the Cav-1 protein levels in RMS cells, Cav-1 overexpression and knockdown triggered a rise or depletion of Cavin-1 protein levels in RD cells, respectively, in turn reflecting on increased or decreased cell proliferation, migration and anchorage-independent cell growth. Collectively, these data indicate that the interaction between Cavin-1 and Cav-1 underlies the cell growth and migration in myogenic tumors.
横纹肌肉瘤(RMS)是一种儿童软组织肿瘤,广泛表达通常在骨骼肌中发现的标志物。Cavin-1是一种最近发现的蛋白质,在小窝的形态发生过程中与小窝蛋白-1(Cav-1)积极协作,其在癌症中的作用正受到越来越多的关注。通过在此联合运用计算机分析和体外分析,我们发现Cavin-1在肌源性RMS肿瘤以及人源和原代小鼠RMS培养物中均有表达,呈现出广泛的亚细胞定位,范围从细胞核、细胞质到质膜。特别地,Cavin-1与Cav-1之间的共表达和质膜相互作用是人和小鼠RMS细胞培养物增殖的特征,而在肌源性分化过程中观察到它们的表达水平下调。在人RD和RH30细胞中敲低Cavin-1或Cav-1会导致细胞增殖和迁移受损。此外,RD细胞中Cavin-1的缺失会损害软琼脂中不依赖贴壁的细胞生长。虽然Cavin-1的缺失不影响RMS细胞中Cav-1的蛋白水平,但Cav-1的过表达和敲低分别导致RD细胞中Cavin-1蛋白水平的升高或降低,进而分别反映出细胞增殖、迁移和不依赖贴壁的细胞生长的增加或减少。总体而言,这些数据表明Cavin-1与Cav-1之间的相互作用是肌源性肿瘤细胞生长和迁移的基础。