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Cyclic stretch-induced stress fiber dynamics - dependence on strain rate, Rho-kinase and MLCK.

机译:循环拉伸诱发的应力纤维动力学-取决于应变率,Rho激酶和MLCK。

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摘要

Stress fiber realignment is an important adaptive response to cyclic stretch for nonmuscle cells, but the mechanism by which such reorganization occurs is not known. By analyzing stress fiber dynamics using live cell microscopy, we revealed that stress fiber reorientation perpendicular to the direction of cyclic uniaxial stretching at 1 Hz did not involve disassembly of the stress fiber distal ends located at focal adhesion sites. Instead, these distal ends were often used to assemble new stress fibers oriented progressively further away from the direction of stretch. Stress fiber disassembly and reorientation were not induced when the frequency of stretch was decreased to 0.01 Hz, however. Treatment with the Rho-kinase inhibitor Y27632 reduced stress fibers to thin fibers located in the cell periphery which bundled together to form thick fibers oriented parallel to the direction of stretching at 1Hz. In contrast, these thin fibers remained diffuse in cells subjected to stretch at 0.01 Hz. Cyclic stretch at 1 Hz also induced actin fiber formation parallel to the direction of stretch in cells treated with the myosin light chain kinase (MLCK) inhibitor ML-7, but these fibers were located centrally rather than peripherally. These results shed new light on the mechanism by which stress fibers reorient in response to cyclic stretch in different regions of the actin cytoskeleton.
机译:应力纤维的重新排列是非肌肉细胞对循环拉伸的重要适应性反应,但这种重组发生的机制尚不清楚。通过使用活细胞显微镜分析应力纤维动力学,我们发现垂直于1Hz的循环单轴拉伸方向的应力纤维重新定向不涉及位于粘着部位的应力纤维远端的拆卸。相反,这些远端通常用于组装新的应力纤维,逐渐远离拉伸方向。但是,当拉伸频率降低到0.01 Hz时,不会引起应力纤维的分解和重新定向。用Rho激酶抑制剂Y27632处理可将应力纤维还原为位于细胞外围的细纤维,这些细纤维捆在一起形成与1Hz拉伸方向平行的粗纤维。相反,这些细纤维在以0.01Hz拉伸的细胞中保持扩散。在1 Hz的循环拉伸下,肌动蛋白轻链激酶(MLCK)抑制剂ML-7处理的细胞中,肌动蛋白纤维的形成也平行于拉伸方向,但这些纤维位于中央而不是周边。这些结果为应力纤维响应肌动蛋白细胞骨架不同区域的循环拉伸而重新定向的机理提供了新的思路。

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