Menezes Gustavo C, Miron-Mendoza Miguel, Ho Chin-Han, Jiang Hongmei, Grinnell Frederick
Universidade Federal do Rio de Janeiro, Instituto de Biofisica Carlos Chagas Filho, Rio de Janeiro, Brazil.
Exp Cell Res. 2008 Oct 1;314(16):3081-91. doi: 10.1016/j.yexcr.2008.07.018. Epub 2008 Jul 26.
Tractional force exerted by tissue cells in 3D collagen matrices can be utilized for matrix remodeling or cell migration. The interrelationship between these motile processes is not well understood. The current studies were carried out to test the consequences of oncogenic Ras (H-Ras(V12)) transformation on human fibroblast contraction and migration in 3D collagen matrices. Beginning with hTERT-immortalized cells, we prepared fibroblasts stably transformed with E6/E7 and with the combination HPV16 E6/E7 and H-Ras(V12). Oncogenic Ras-transformed cells lost contact inhibition of cell growth, formed colonies in soft agar and were unable to make adherens junctions. We observed no changes in the extent or growth factor dependence of collagen matrix contraction (floating or stress-relaxation) by oncogenic Ras-transformed cells. On the other hand, transformed cells in nested collagen matrices lost not only growth factor selectivity, but also cell-matrix density-dependent inhibition of migration. These findings demonstrate differential regulation of collagen matrix contraction and cell migration in 3D collagen matrices.
组织细胞在三维胶原蛋白基质中施加的牵引力可用于基质重塑或细胞迁移。这些运动过程之间的相互关系尚未得到充分理解。目前的研究旨在测试致癌性Ras(H-Ras(V12))转化对人成纤维细胞在三维胶原蛋白基质中的收缩和迁移的影响。从hTERT永生化细胞开始,我们制备了稳定转染E6/E7以及HPV16 E6/E7和H-Ras(V12)组合的成纤维细胞。致癌性Ras转化的细胞失去了对细胞生长的接触抑制,在软琼脂中形成集落,并且无法形成黏附连接。我们观察到致癌性Ras转化的细胞在胶原蛋白基质收缩(漂浮或应力松弛)的程度或生长因子依赖性方面没有变化。另一方面,嵌套在胶原蛋白基质中的转化细胞不仅失去了生长因子选择性,而且失去了细胞-基质密度依赖性迁移抑制。这些发现证明了三维胶原蛋白基质中胶原蛋白基质收缩和细胞迁移的差异调节。