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Biomaterials. 2009 Dec;30(35):6687-94. doi: 10.1016/j.biomaterials.2009.08.036. Epub 2009 Sep 16.
Cells within tissues derive mechanical anchorage and specific molecular signals from the insoluble extracellular matrix (ECM) that surrounds them. Understanding the role of different cues that extracellular matrices provide cells is critical for controlling and predicting cell response to scaffolding materials. Using an engineered extracellular matrix of Type I collagen we examined how the stiffness, supramolecular structure, and glycosylation of collagen matrices influence the protein levels of cellular FAK and the activation of myosin II. Our results show that (1) cellular FAK is downregulated on collagen fibrils, but not on a non-fibrillar monolayer of collagen, (2) the downregulation of FAK is independent of the stiffness of the collagen fibrils, and (3) FAK levels are correlated with levels of tyrosine phosphorylation of the collagen adhesion receptor DDR2. Further, siRNA depletion of DDR2 blocks FAK downregulation. Our results suggest that the collagen receptor DDR2 is involved in the regulation of FAK levels in vSMC adhered to Type I collagen matrices, and that regulation of FAK levels in these cells appears to be independent of matrix stiffness.
细胞从周围不可溶的细胞外基质(ECM)获得机械锚定和特定的分子信号。了解细胞外基质为细胞提供的不同线索的作用对于控制和预测细胞对支架材料的反应至关重要。使用 I 型胶原蛋白的工程细胞外基质,我们研究了胶原基质的硬度、超分子结构和糖基化如何影响细胞 FAK 的蛋白水平和肌球蛋白 II 的激活。我们的结果表明:(1)细胞 FAK 在胶原原纤维上被下调,但在非纤维状的胶原单层上则不会;(2)FAK 的下调与胶原原纤维的硬度无关;(3)FAK 水平与胶原蛋白黏附受体 DDR2 的酪氨酸磷酸化水平相关。此外,siRNA 耗尽 DDR2 可阻止 FAK 的下调。我们的结果表明,胶原蛋白受体 DDR2 参与了黏附在 I 型胶原基质上的血管平滑肌细胞中 FAK 水平的调节,并且这些细胞中 FAK 水平的调节似乎独立于基质硬度。