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The Role of Vinculin in the Regulation of the Mechanical Properties of Cells

机译:Vinculin在调节细胞机械特性中的作用

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Vinculin couples as a focal adhesion protein the extracellular matrix (ECM) through integrins to the actomyosin cytoskeleton. During the last years vinculin has become the focus of cell mechanical measurements and a key protein regulating the transmission of contractile forces. In earlier reports vinculin has been described as an inhibitor of cell migration on planar substrates, because knock-out of vinculin in F9 mouse embryonic carcinoma cells and mouse embryonic fibroblasts showed increased cell motility on 2D substrates. The role of vinculin in cell invasion through a 3D extracellular matrix is still fragmentarily investigated. This review presents vinculin in its role as a regulator of cellular mechanical functions. Contractile force generation is reduced when vinculin is absent, or enhanced when vinculin is present. Moreover, the generation of contractile forces is a prerequisite for cell invasion through a dense 3D ECM, where the pore-size is smaller than the diameter of the cell nucleus (<2 μm). Measurements of cell’s biophysical properties will be presented. In summary, vinculin’s leading role among focal adhesion proteins in regulating the mechanical properties of cells will be discussed.
机译:Vinculin通过整合素将细胞外基质(ECM)耦合为放线菌素细胞骨架,作为粘着斑蛋白。在过去的几年中,长春新蛋白已经成为细胞力学测量的重点,并且是调节收缩力传递的关键蛋白。在较早的报道中,纽蛋白被描述为在平面底物上的细胞迁移的抑制剂,因为在F9小鼠胚胎癌细胞和小鼠胚胎成纤维细胞中敲除纽蛋白显示在2D底物上细胞活力增加。纽蛋白在通过3D细胞外基质侵袭细胞中的作用仍被零碎研究。这篇综述介绍了长春新碱在调节细胞机械功能中的作用。当不存在纽蛋白时,收缩力的产生会减少,而如果存在纽蛋白,则收缩力的产生会增加。此外,产生收缩力是通过致密3D ECM侵入细胞的前提条件,其中3D ECM的孔径小于细胞核的直径(<2μm)。将介绍细胞的生物物理特性的测量。总而言之,将讨论纽蛋白在黏着斑蛋白中在调节细胞机械特性中的主导作用。

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