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活性涨落对粒子、马达和 DNA 发夹动力学的影响。

The effect of active fluctuations on the dynamics of particles, motors and DNA-hairpins.

机构信息

Faculty of Sciences, Hasselt University, 3590 Diepenbeek, Belgium.

出版信息

Soft Matter. 2017 Mar 15;13(11):2181-2191. doi: 10.1039/c6sm02568d.

Abstract

Inspired by recent experiments on the dynamics of particles and polymers in artificial cytoskeletons and in cells, we introduce a modified Langevin equation for a particle in an environment that is a viscoelastic medium and that is brought out of equilibrium by the action of active fluctuations caused by molecular motors. We show that within such a model, the motion of a free particle crosses over from superdiffusive to subdiffusive as observed for tracer particles in an in vitro cytoskeleton or in a cell. We investigate the dynamics of a particle confined by a harmonic potential as a simple model for the motion of the tethered head of kinesin-1. We find that the probability that the head is close to its binding site on the microtubule can be enhanced by a factor of two due to active forces. Finally, we study the dynamics of a particle in a double well potential as a model for the dynamics of DNA-hairpins. We show that the active forces effectively lower the potential barrier between the two minima and study the impact of this phenomenon on the zipping/unzipping rate.

摘要

受最近在人工细胞骨架和细胞中粒子和聚合物动力学的实验启发,我们引入了一个修正的朗之万方程,用于描述在粘弹性介质中由分子马达引起的活性涨落作用而偏离平衡的粒子。我们表明,在这样的模型中,自由粒子的运动从超扩散转变为亚扩散,就像在体外细胞骨架或细胞中示踪粒子的运动一样。我们研究了受限于调和势的粒子的动力学,这是一种用于模拟驱动蛋白-1的束缚头部运动的简单模型。我们发现,由于活性力的作用,头部接近微管上结合位点的概率可以提高两倍。最后,我们研究了双势阱中粒子的动力学,作为 DNA 发夹动力学的模型。我们表明,活性力有效地降低了两个势阱之间的势垒,并研究了这一现象对拉链/解拉链速率的影响。

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