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Smooth muscle myosin cross-bridge interactions modulate actin filament sliding velocity in vitro

机译:平滑肌肌球蛋白跨桥相互作用在体外调节肌动蛋白丝的滑动速度

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摘要

Although it is generally believed that phosphorylation of the regulatory light chain of myosin is required before smooth muscle can develop force, it is not known if the overall degree of phosphorylation can also modulate the rate at which cross-bridges cycle. To address this question, an in vitro motility assay was used to observe the motion of single actin filaments interacting with smooth muscle myosin copolymers composed of varying ratios of phosphorylated and unphosphorylated myosin. The results suggest that unphosphorylated myosin acts as a load to slow down the rate at which actin is moved by the faster cycling phosphorylated cross-bridges. Myosin that was chemically modified to generate a noncycling analogue of the "weakly" bound conformation was similarly able to slow down phosphorylated myosin. The observed modulation of actin velocity as a function of copolymer composition can be accounted for by a model based on mechanical interactions between cross-bridges.
机译:尽管通常认为在平滑肌能够产生力之前需要肌球蛋白调节性轻链的磷酸化,但是尚不清楚总的磷酸化程度是否也可以调节跨桥循环的速率。为了解决这个问题,使用体外运动测定法观察单个肌动蛋白丝与平滑肌肌球蛋白共聚物相互作用的运动,该平滑肌肌球蛋白共聚物由不同比例的磷酸化和未磷酸化的肌球蛋白组成。结果表明,未磷酸化的肌球蛋白充当负载,以减慢肌动蛋白被更快循环的磷酸化跨桥移动的速率。经过化学修饰以生成“弱”键构象的非环环类似物的肌球蛋白同样能够减慢磷酸化的肌球蛋白。观察到的肌动蛋白速度作为共聚物组成的函数的调节可以通过基于跨桥之间的机械相互作用的模型来解释。

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