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Piconewton Forces and Nanometre Steps: An Assessment of Experimental Results for Actomyosin Interaction using Huxley Kinetics

机译:Piconewton部队和纳米级步骤:使用Huxley动力学评估用于使用Huxley动力学的Actomyosin相互作用的实验结果

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Laser trap measurements of piconewton forces and nanometre displacements of actomyosin interaction herald a new generation of powerful tools, both in their elegance and precision, with which the behaviour of individual molecular events can be investigated. Several laboratories have successfully used this technology to observe and score both forward and reverse displacements of molecular motors, together with the transduction of chemical energy into force and displacement. We propose a Langevin-type stochastic model, together with Huxley (1957) kinetics for myosin attachment and detachment, and use it to examine some experimental results for actomyosin interaction and force generation. Our model predictions indicate that in the absence of attachment the distribution of the ensuing displacements has approximately zero mean. Attachment events produced displacements with step sizes of approxi-mately 7 nm, which is in agreement with some recent optical tweezer experimental results.
机译:Piconewton力量的激光陷阱测量术的肌动素互动导出了新一代强大的工具,既优雅和精确,也可以调查单个分子事件的行为。 有几个实验室已成功地使用该技术来观察和得分分子电机的前向和反向位移,以及转换化学能力生效和位移。 我们提出了一个Langevin型随机模型,以及Huxley(1957)的肌球蛋白附件和脱离动力学,并使用它来检查肌动素相互作用和力产生的一些实验结果。 我们的模型预测表明,在没有附件的情况下,随后的位移的分布具有大致零均值。 附件事件产生了阶梯尺寸的大约7nm的位移,这与一些最近的光学镊子实验结果一致。

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