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Active force maintains the stability of a contractile ring

机译:主动力保持收缩环的稳定性

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We investigate a system of sufficiently dense polar actin filaments considered rigid and crosslinked by dimer myosin II protein within the contractile ring. The Langevin dynamics of this system is cast in a functional integral formalism and then transformed into density variables. Using the dynamical Random Phase Approximation (RPA) along with the a one-dimensional Langevin dynamics simulation (LDS), we investigate the structural integrity of the actin bundle network. The active force and the networking force reveal a non-trivial diffusive behaviour of the filaments within the ring. We conclude on when the active and networking forces lead to the contractile ring breaking down. The non-equilibrium active force is predominantly responsible for the prevention of the gaps in the ring.
机译:我们研究了一种充分致密的极性肌动蛋白长丝的系统,被认为是在收缩环内的二聚体肌蛋白II蛋白的刚性和交联。 该系统的Langevin动态被铸造在功能整体形式中,然后转化为密度变量。 使用动态随机相位近似(RPA)以及一维Langevin Dynamics仿真(LDS),我们研究了Actin Bundle网络的结构完整性。 主动力和网络力揭示了环内长丝的非普通扩散行为。 当积极和网络力量导致收缩戒指分解时,我们得出结论。 非平衡主动力主要负责预防环中的间隙。

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