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Flow mechanotransduction regulates traction forces intercellular forces and adherens junctions

机译:流动机械传导调节牵引力细胞间力和粘附连接

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摘要

Endothelial cells respond to fluid shear stress through mechanotransduction responses that affect their cytoskeleton and cell-cell contacts. Here, endothelial cells were grown as monolayers on arrays of microposts and exposed to laminar or disturbed flow to examine the relationship among traction forces, intercellular forces, and cell-cell junctions. Cells under laminar flow had traction forces that were higher than those under static conditions, whereas cells under disturbed flow had lower traction forces. The response in adhesion junction assembly matched closely with changes in traction forces since adherens junctions were larger in size for laminar flow and smaller for disturbed flow. Treating the cells with calyculin-A to increase myosin phosphorylation and traction forces caused an increase in adherens junction size, whereas Y-27362 cause a decrease in their size. Since tugging forces across cell-cell junctions can promote junctional assembly, we developed a novel approach to measure intercellular forces and found that these forces were higher for laminar flow than for static or disturbed flow. The size of adherens junctions and tight junctions matched closely with intercellular forces for these flow conditions. These results indicate that laminar flow can increase cytoskeletal tension while disturbed flow decreases cytoskeletal tension. Consequently, we found that changes in cytoskeletal tension in response to shear flow conditions can affect intercellular tension, which in turn regulates the assembly of cell-cell junctions.
机译:内皮细胞通过影响其细胞骨架和细胞接触的机械转导反应来响应流体剪切应力。在这里,内皮细胞在微桩阵列上以单层形式生长,并暴露于层流或扰动流中,以检查牵引力,细胞间作用力和细胞间连接之间的关系。层流下的细胞的牵引力要高于静态条件下的细胞,而扰动下的细胞的牵引力则较低。粘合连接组件的响应与牵引力的变化紧密匹配,因为对于层流,粘合连接的尺寸较大,而对于扰动流,粘合连接的尺寸较小。用钙调蛋白-A处理细胞以增加肌球蛋白的磷酸化和牵引力会导致粘附连接处大小增加,而Y-27362会导致其大小减少。由于跨细胞-细胞连接的拉力可以促进连接组装,因此我们开发了一种新的方法来测量细胞间的力,发现层流的这些力高于静态或扰动的力。对于这些流动条件,粘附连接和紧密连接的大小与细胞间力紧密匹配。这些结果表明层流可以增加细胞骨架的张力,而紊乱的流动可以降低细胞骨架的张力。因此,我们发现响应于剪切流条件的细胞骨架张力的变化会影响细胞间的张力,从而调节细胞间连接的组装。

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