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Synergy between Rho signaling and matrix density in cyclic stretch-induced stress fiber organization

机译:循环拉伸诱导应力纤维组织中Rho信号传导与基质密度的协同作用

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Cells adapt in response to mechanical stimulation to ensure adequate tissue functioning. F-actin stress fibers provide a key element in the adaptation process. The high sensitivity and fast adaptation of the F-actin cytoskeleton to cyclic strain have been studied extensively in a 2-D environment; however, 3-D data are scarce. Our previous work showed that stress fibers organize perpendicular to cyclic stretching (stretch-avoidance) in three dimensions. However, stretch-avoidance was absent when cells populated a high density matrix. In this study our aim was to obtain more insight into the synergy between matrix density and the signaling pathways that govern stress fiber remodeling. Therefore we studied stress fiber organization in 3-D reconstituted collagen tissues (at low and high matrix density), subjected to cyclic stretch upon interference with molecular signaling pathways. In particular, the influence of the small GTPase Rho and its downstream effectors were studied. Only at low matrix density does stress fiber stretch avoidance show a stretch-magnitude-dependent response. The activity of matrix metalloproteinases (MMPs), Rho-kinase and myosin light chain kinase are essential for stress fiber reorientation. Although high matrix density restricts stress fiber reorientation, Rho activation can overcome this restriction, but only in the presence of active MMPs. Results from this study highlight a synergistic action between matrix remodeling and Rho signaling in cyclic-stretch-induced stress fiber organization in 3-D tissue.
机译:细胞适应机械刺激以确保足够的组织功能。 F-肌动蛋白应激纤维在适应过程中提供了关键要素。 F-肌动蛋白细胞骨架对环状菌株的高敏感性和快速适应性已在二维环境中进行了广泛研究。但是,3D数据很少。我们以前的工作表明,应力纤维在三个维度上垂直于循环拉伸(避免拉伸)组织。但是,当细胞填充高密度基质时,缺乏避免拉伸的作用。在这项研究中,我们的目的是获得对基质密度和控制应力纤维重塑的信号传导途径之间协同作用的更多了解。因此,我们研究了3D重构胶原组织(低密度和高基质密度)中的应力纤维组织,该组织在受到分子信号传导途径干扰后经历循环拉伸。特别是,研究了小GTPase Rho及其下游效应子的影响。仅在低基质密度下,避免应力纤维的拉伸才会显示出拉伸强度相关的响应。基质金属蛋白酶(MMP),Rho激酶和肌球蛋白轻链激酶的活性对于应激纤维的重新定向至关重要。尽管高基质密度限制了应力纤维的重新定向,但Rho激活可以克服这一限制,但前提是存在活性MMP。这项研究的结果突显了3D组织中循环重构诱导的应力纤维组织中基质重塑和Rho信号之间的协同作用。

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