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Cooperative effects of Rho and mechanical stretch on stress fiber organization

机译:Rho和机械拉伸对应力纤维组织的协同作用

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The small GTPase Rho regulates the formation of actin stress fibers in adherent cells through activation of its effector proteins Rho-kinase and mDia. We found in bovine aortic endothelial cells that inhibitions of Rho, Rho-kinase, and mDia (with C3, Y27632, and F1F2Δ1, respectively) suppressed stress fiber formation, but fibers appeared after 10% cyclic uniaxial stretch (1-Hz frequency). In contrast to the predominately perpendicular alignment of stress fibers to the stretch direction in normal cells, the stress fibers in cells with Rho pathway inhibition became oriented parallel to the stretch direction. In cells with normal Rho activity, the extent of perpendicular orientation of stress fibers depended on the magnitude of stretch. Expressing active RhoV14 plasmid in these cells enhanced the stretch-induced stress fiber orientation by an extent equivalent to an additional ≈3% stretch. This augmentation of the stretch-induced perpendicular orientation by RhoV14 was blocked by Y27632 and by F1F2Δ1. Thus, the activity of the Rho pathway plays a critical role in determining both the direction and extent of stretch-induced stress fiber orientation in bovine aortic endothelial cells. Our results demonstrate that the stretch-induced stress fiber orientation is a function of the interplay between Rho pathway activity and the magnitude of stretching.
机译:小的GTPase Rho通过激活效应蛋白Rho激酶和mDia来调节粘附细胞中肌动蛋白应激纤维的形成。我们发现在牛主动脉内皮细胞中,Rho,Rho激酶和mDia(分别具有C3,Y27632和F1F2Δ1)的抑制作用抑制了应力纤维的形成,但是纤维在10%的循环单轴拉伸(频率为1 Hz)后出现。与正常细胞中应力纤维主要垂直于拉伸方向垂直排列相反,具有Rho途径抑制作用的细胞中的应力纤维变得平行于拉伸方向。在具有正常Rho活性的细胞中,应力纤维的垂直取向程度取决于拉伸程度。在这些细胞中表达活性RhoV14质粒可将拉伸诱导的应力纤维定向增强程度,相当于额外的≈3%拉伸。 RhoV14对拉伸诱导的垂直方向的这种增强被Y27632和F1F2Δ1阻止。因此,Rho途径的活性在确定牛主动脉内皮细胞中拉伸诱导的应力纤维取向的方向和程度方面都起着至关重要的作用。我们的结果表明,拉伸诱导的应力纤维取向是Rho途径活性和拉伸强度之间相互作用的函数。

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