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Flow-induced focal adhesion remodeling mediated by local cytoskeletal stresses and reorganization

机译:局部细胞骨架应力和重组介导的流动诱导的焦粘连重塑

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摘要

Cells respond to fluid shear stress through dynamic processes involving changes in actomyosin and other cytoskeletal stresses, remodeling of cell adhesions, and cytoskeleton reorganization. In this study we simultaneously measured focal adhesion dynamics and cytoskeletal stress and reorganization in MDCK cells under fluid shear stress. The measurements used co-expression of fluorescently labeled paxillin and force sensitive FRET probes of α-actinin. A shear stress of 0.74 dyn/cm2 for 3?hours caused redistribution of cytoskeletal tension and significant focal adhesion remodeling. The fate of focal adhesions is determined by the stress state and stability of the linked actin stress fibers. In the interior of the cell, the mature focal adhesions disassembled within 35-40?min under flow and stress fibers disintegrated. Near the cell periphery, the focal adhesions anchoring the stress fibers perpendicular to the cell periphery disassembled, while focal adhesions associated with peripheral fibers sustained. The diminishing focal adhesions are coupled with local cytoskeletal stress release and actin stress fiber disassembly whereas sustaining peripheral focal adhesions are coupled with an increase in stress and enhancement of actin bundles. The results show that flow induced formation of peripheral actin bundles provides a favorable environment for focal adhesion remodeling along the cell periphery. Under such condition, new FAs were observed along the cell edge under flow. Our results suggest that the remodeling of FAs in epithelial cells under flow is orchestrated by actin cytoskeletal stress redistribution and structural reorganization.
机译:细胞通过动态过程对流体剪切应力作出反应,包括肌动球蛋白和其他细胞骨架应力的变化、细胞粘附的重塑和细胞骨架的重组。在这项研究中,我们同时测量了流体剪切应力下MDCK细胞的粘着动力学和细胞骨架应力及重组。测量使用荧光标记的帕西林和α-肌动蛋白的力敏FRET探针的共表达。剪切应力为0.74 dyn/cm2,持续时间为3?小时导致细胞骨架张力的重新分布和显著的粘着重塑。局灶性粘连的命运取决于连接的肌动蛋白应力纤维的应力状态和稳定性。在细胞内部,成熟的局灶性粘连在35-40分钟内分解?在流动和应力作用下,纤维分解。在细胞周围附近,锚定垂直于细胞周围的应力纤维的局灶性粘连解体,而与周围纤维相关的局灶性粘连持续存在。局灶性粘连的减少与局部细胞骨架应力释放和肌动蛋白应力纤维分解相耦合,而维持周围局灶性粘连与应力增加和肌动蛋白束增强相耦合。结果表明,流动诱导的外周肌动蛋白束的形成为细胞外周粘着重塑提供了有利的环境。在此条件下,在流动状态下,沿细胞边缘观察到新的FAs。我们的结果表明,在流动的上皮细胞中,FAs的重塑是由肌动蛋白-细胞骨架应力重新分布和结构重组协调的。

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