II. Institut für Theoretische Physik, Universität Stuttgart, 70550 Stuttgart, Germany.
Int J Mol Sci. 2023 Apr 20;24(8):7610. doi: 10.3390/ijms24087610.
In single-molecule experiments, the dynamics of molecular motors are often observed indirectly by measuring the trajectory of an attached bead in a motor-bead assay. In this work, we propose a method to extract the step size and stalling force for a molecular motor without relying on external control parameters. We discuss this method for a generic hybrid model that describes bead and motor via continuous and discrete degrees of freedom, respectively. Our deductions are solely based on the observation of waiting times and transition statistics of the observable bead trajectory. Thus, the method is non-invasive, operationally accessible in experiments and can, in principle, be applied to any model describing the dynamics of molecular motors. We briefly discuss the relation of our results to recent advances in stochastic thermodynamics on inference from observable transitions. Our results are confirmed by extensive numerical simulations for parameters values of an experimentally realized F1-ATPase assay.
在单分子实验中,分子马达的动力学通常通过测量马达珠实验中附着在珠上的轨迹来间接观察。在这项工作中,我们提出了一种方法,无需依赖外部控制参数即可提取分子马达的步长和停顿力。我们讨论了一种通用的混合模型,该模型分别通过连续和离散自由度来描述珠和马达。我们的推论仅基于对可观察珠轨迹的等待时间和跃迁统计的观察。因此,该方法是非侵入性的,在实验中可操作,并且原则上可应用于任何描述分子马达动力学的模型。我们简要讨论了我们的结果与最近关于从可观察跃迁推断的随机热力学进展的关系。我们的结果通过对实验实现的 F1-ATPase 测定中参数值的广泛数值模拟得到了证实。