Center for Medical Physics and Technology, Biophysics Group, Friedrich-Alexander-University of Erlangen-Nuremberg, 91052 Erlangen, Germany.
J Biol Chem. 2010 Apr 23;285(17):13121-30. doi: 10.1074/jbc.M109.087171. Epub 2010 Feb 24.
The cytoskeletal protein vinculin contributes to the mechanical link of the contractile actomyosin cytoskeleton to the extracellular matrix (ECM) through integrin receptors. In addition, vinculin modulates the dynamics of cell adhesions and is associated with decreased cell motility on two-dimensional ECM substrates. The effect of vinculin on cell invasion through dense three-dimensional ECM gels is unknown. Here, we report how vinculin expression affects cell invasion into three-dimensional collagen matrices. Cell motility was investigated in vinculin knockout and vinculin expressing wild-type mouse embryonic fibroblasts. Vinculin knockout cells were 2-fold more motile on two-dimensional collagen-coated substrates compared with wild-type cells, but 3-fold less invasive in 2.4 mg/ml three-dimensional collagen matrices. Vinculin knockout cells were softer and remodeled their cytoskeleton more dynamically, which is consistent with their enhanced two-dimensional motility but does not explain their reduced three-dimensional invasiveness. Importantly, vinculin-expressing cells adhered more strongly to collagen and generated 3-fold higher traction forces compared with vinculin knockout cells. Moreover, vinculin-expressing cells were able to migrate into dense (5.8 mg/ml) three-dimensional collagen matrices that were impenetrable for vinculin knockout cells. These findings suggest that vinculin facilitates three-dimensional matrix invasion through up-regulation or enhanced transmission of traction forces that are needed to overcome the steric hindrance of ECMs.
细胞骨架蛋白 vinculin 通过整合素受体将收缩性肌动球蛋白细胞骨架与细胞外基质 (ECM) 的机械连接。此外,vinculin 调节细胞黏附的动态性,并与二维 ECM 底物上细胞迁移能力的降低有关。vinculin 对致密三维 ECM 凝胶中细胞侵袭的影响尚不清楚。在这里,我们报告了 vinculin 表达如何影响细胞侵袭三维胶原基质。在 vinculin 敲除和表达野生型小鼠胚胎成纤维细胞中研究了细胞迁移。与野生型细胞相比,vinculin 敲除细胞在二维胶原包被的基质上的迁移能力提高了 2 倍,但在 2.4 mg/ml 的三维胶原基质中的侵袭能力降低了 3 倍。vinculin 敲除细胞更柔软,其细胞骨架重塑更具动态性,这与其增强的二维迁移能力一致,但无法解释其降低的三维侵袭能力。重要的是,与 vinculin 敲除细胞相比,表达 vinculin 的细胞对胶原的黏附更强,并产生 3 倍更高的牵引力。此外,表达 vinculin 的细胞能够迁移到致密的(5.8 mg/ml)三维胶原基质中,而 vinculin 敲除细胞无法穿透这些基质。这些发现表明,vinculin 通过上调或增强需要克服 ECM 空间位阻的牵引力的传递,促进三维基质的侵袭。