Friedrich Miescher Institute for Biomedical Research, CH-4056 Basel, Switzerland.
J Cell Sci. 2010 May 1;123(Pt 9):1511-21. doi: 10.1242/jcs.060905. Epub 2010 Apr 7.
To test the hypothesis that the pericellular fibronectin matrix is involved in mechanotransduction, we compared the response of normal and fibronectin-deficient mouse fibroblasts to cyclic substrate strain. Normal fibroblasts seeded on vitronectin in fibronectin-depleted medium deposited their own fibronectin matrix. In cultures exposed to cyclic strain, RhoA was activated, actin-stress fibers became more prominent, MAL/MKL1 shuttled to the nucleus, and mRNA encoding tenascin-C was induced. By contrast, these RhoA-dependent responses to cyclic strain were suppressed in fibronectin knockdown or knockout fibroblasts grown under identical conditions. On vitronectin substrate, fibronectin-deficient cells lacked fibrillar adhesions containing alpha5 integrin. However, when fibronectin-deficient fibroblasts were plated on exogenous fibronectin, their defects in adhesions and mechanotransduction were restored. Studies with fragments indicated that both the RGD-synergy site and the adjacent heparin-binding region of fibronectin were required for full activity in mechanotransduction, but not its ability to self-assemble. In contrast to RhoA-mediated responses, activation of Erk1/2 and PKB/Akt by cyclic strain was not affected in fibronectin-deficient cells. Our results indicate that pericellular fibronectin secreted by normal fibroblasts is a necessary component of the strain-sensing machinery. Supporting this hypothesis, induction of cellular tenascin-C by cyclic strain was suppressed by addition of exogenous tenascin-C, which interferes with fibronectin-mediated cell spreading.
为了验证细胞外纤维连接蛋白基质参与机械转导的假说,我们比较了正常和纤维连接蛋白缺陷型小鼠成纤维细胞对周期性底物应变的反应。在纤维连接蛋白耗尽的培养基中接种于 vitronectin 的正常成纤维细胞会分泌自己的纤维连接蛋白基质。在暴露于周期性应变的培养物中,RhoA 被激活,肌动蛋白应力纤维变得更加明显,MAL/MKL1 穿梭到核内,编码 tenascin-C 的 mRNA 被诱导。相比之下,在相同条件下生长的纤维连接蛋白敲低或敲除的成纤维细胞中,这些依赖 RhoA 的对周期性应变的反应受到抑制。在 vitronectin 底物上,纤维连接蛋白缺陷型细胞缺乏含有 alpha5 整合素的纤维状黏附物。然而,当纤维连接蛋白缺陷型成纤维细胞被种植在细胞外纤维连接蛋白上时,它们在黏附和机械转导中的缺陷得到了恢复。片段研究表明,纤维连接蛋白在机械转导中发挥完全活性既需要 RGD 协同位点,也需要紧邻的肝素结合区,但不需要其自组装的能力。与 RhoA 介导的反应不同,周期性应变对 Erk1/2 和 PKB/Akt 的激活在纤维连接蛋白缺陷型细胞中不受影响。我们的结果表明,正常成纤维细胞分泌的细胞外纤维连接蛋白是应变感应机制的必要组成部分。支持这一假说,外源性 tenascin-C 的添加抑制了周期性应变诱导的细胞 tenascin-C 的诱导,因为它干扰了纤维连接蛋白介导的细胞铺展。