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首页> 外文期刊>The Journal of biological chemistry >The Vinculin C-terminal Hairpin Mediates F-actin Bundle Formation, Focal Adhesion, and Cell Mechanical Properties
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The Vinculin C-terminal Hairpin Mediates F-actin Bundle Formation, Focal Adhesion, and Cell Mechanical Properties

机译:vinculin c末端发夹介导F-actin束形成,局灶性粘附和细胞机械性能

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Vinculin is an essential and highly conserved cell adhesion protein, found at both focal adhesions and adherens junctions, where it couples integrins or cadherins to the actin cytoskeleton. Vinculin is involved in controlling cell shape, motility, and cell survival, and has more recently been shown to play a role in force transduction. The tail domain of vinculin (Vt) contains determinants necessary for binding and bundling of actin filaments. Actin binding to Vt has been proposed to induce formation of a Vt dimer that is necessary for cross-linking actin filaments. Results from this study provide additional support for actin-induced Vt self-association. Moreover, the actin-induced Vt dimer appears distinct from the dimer formed in the absence of actin. To better characterize the role of the Vt strap and carboxyl terminus (CT) in actin binding, Vt self-association, and actin bundling, we employed smaller amino-terminal (NT) and CT deletions that do not perturb the structural integrity of Vt. Although both NT and CT deletions retain actin binding, removal of the CT hairpin (1061–1066) selectively impairs actin bundling in vitro. Moreover, expression of vinculin lacking the CT hairpin in vinculin knock-out murine embryonic fibroblasts affects the number of focal adhesions formed, cell spreading as well as cellular stiffening in response to mechanical force.
机译:vinculin是一种必不可少的且高度保守的细胞粘附蛋白,在局灶性粘连和粘附的结中发现,其中将整合蛋白或粘液蛋白联合到肌动蛋白细胞骨架上。 Vinculin参与控制细胞形状,运动和细胞存活,并且最近被证明可以在力转导中发挥作用。 vinculin(vt)的尾部域含有结合和捆绑actin长丝所必需的决定簇。已经提出了肌动蛋白结合与VT的结合以诱导形成交联肌动蛋白长丝所必需的VT二聚体的形成。本研究的结果为actin诱导的vt自我关联提供了额外的支持。此外,肌动蛋白诱导的Vt二聚体从未在没有肌动蛋白的情况下形成的二聚体出现不同。为了更好地表征VT带和羧基末端(CT)在肌动蛋白结合,VT自我关联和肌动蛋白捆绑中的作用,我们使用的较小的氨基末端(NT)和CT缺失,其不会扰乱VT的结构完整性。虽然NT和CT缺失保留肌动蛋白结合,但是除去CT发夹(1061-1066)选择性地损害体外肌肽捆扎。此外,在Vinculin敲除鼠胚胎成纤维细胞中缺乏CT发夹的vinculin的表达影响形成的焦粘连的数量,电池扩散以及响应机械力的细胞加固。

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