Resolving the kinetics of an ensemble of muscle myosin motors via a temperature-dependent fitting procedure

Valentina Buonfiglio, Niccolò Zagli, Irene Pertici, Vincenzo Lombardi, Pasquale Bianco, Duccio Fanelli
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Abstract

A data fitting procedure is devised and thoroughly tested to provide self-consistent estimates of the relevant mechanokinetic parameters involved in a plausible scheme underpinning the output of an ensemble of myosin II molecular motors mimicking the muscle contraction. The method builds on a stochastic model accounting for the force exerted by the motor ensemble operated both in the low and high force-generating regimes corresponding to different temperature ranges. The proposed interpretative framework is successfully challenged against simulated data, meant to mimic the experimental output of a unidimensional synthetic nanomachine powered by pure muscle myosin isoforms.
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通过与温度相关的拟合程序解析肌肉肌球蛋白马达集合的动力学特性
我们设计了一种数据拟合程序,并对其进行了全面测试,以提供与自身相一致的相关机械动力学参数的估计值,这些参数涉及模拟肌肉收缩的肌球蛋白Ⅱ分子马达集合输出的合理方案。该方法建立在一个随机模型的基础上,该模型考虑到了在不同温度范围对应的低力和高力产生状态下马达集合产生的力。所提出的解释框架成功地与模拟数据进行了对比,模拟了由纯肌肉肌球蛋白驱动的单维合成纳米机械的实验输出。
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