UM-DAE Center for Excellence in Basic Sciences, University of Mumbai, Vidhyanagari Campus, Mumbai-400098, India.
Department of Physics, Indian Institute of Technology, Bombay, Powai, Mumbai-400 076, India.
Phys Rev E. 2017 Feb;95(2-1):022406. doi: 10.1103/PhysRevE.95.022406. Epub 2017 Feb 13.
Molecular motors and cytoskeletal filaments work collectively most of the time under opposing forces. This opposing force may be due to cargo carried by motors or resistance coming from the cell membrane pressing against the cytoskeletal filaments. Some recent studies have shown that the collective maximum force (stall force) generated by multiple cytoskeletal filaments or molecular motors may not always be just a simple sum of the stall forces of the individual filaments or motors. To understand this excess or deficit in the collective force, we study a broad class of models of both cytoskeletal filaments and molecular motors. We argue that the stall force generated by a group of filaments or motors is additive, that is, the stall force of N number of filaments (motors) is N times the stall force of one filament (motor), when the system is reversible at stall. Conversely, we show that this additive property typically does not hold true when the system is irreversible at stall. We thus present a novel and unified understanding of the existing models exhibiting such non-addivity, and generalise our arguments by developing new models that demonstrate this phenomena. We also propose a quantity similar to thermodynamic efficiency to easily predict this deviation from stall-force additivity for filament and motor collectives.
分子马达和细胞骨架丝通常在相反的力下协同工作。这种反向力可能是由于马达携带的货物或来自细胞膜的阻力对细胞骨架丝的挤压。一些最近的研究表明,多个细胞骨架丝或分子马达产生的集体最大力(失速力)并不总是单个丝或马达的失速力的简单总和。为了理解集体力的这种过剩或不足,我们研究了广泛的细胞骨架丝和分子马达模型。我们认为,当系统在失速时是可逆的,一组丝或马达产生的失速力是相加的,即 N 个丝(马达)的失速力是一个丝(马达)的失速力的 N 倍。相反,当系统在失速时是不可逆的,我们表明这种加性性质通常不成立。因此,我们对表现出这种非加性的现有模型提出了一种新颖而统一的理解,并通过开发展示这种现象的新模型来推广我们的论点。我们还提出了一个类似于热力学效率的量,以方便预测丝和马达集体失速力的这种偏离。