论文标题
收缩肌动蛋白环在细胞中的动力和稳定性
Dynamics and stability of contractile actomyosin ring in the cell
论文作者
论文摘要
细胞分裂过程中细胞动力环的收缩导致真核细胞的物理分配到两个子细胞中。这涉及肌动蛋白丝和肌球蛋白电动机在分裂细胞中间平面的生长膜界面中的流动。假设在迭代表的内边缘处的肌动蛋白丝的边界驱动对齐,我们探讨了产生的活性应力如何影响流动。使用连续凝胶理论框架,我们获得了动力学方程的精确轴对称解。这些解决方案与闭合速率的实验观察一致。使用这些溶液,我们在非轴对称变形下对收缩环进行线性稳定性分析。我们的分析表明,在收缩开始期间,很少有低波数模式在收缩开始时不稳定,后来当环收缩到较小的半径时,这是肌动蛋白环闭合的一般特征。我们的理论还捕获了环中的有效张力如何随着其半径而降低,从而在后来的收缩过程中显着减慢。
Contraction of the cytokinetic ring during cell division leads to physical partitioning of a eukaryotic cell into two daughter cells. This involves flows of actin filaments and myosin motors in the growing membrane interface at the mid-plane of the dividing cell. Assuming boundary driven alignment of the acto-myosin filaments at the inner edge of the iterface we explore how the resulting active stresses influence the flow. Using the continuum gel theory framework, we obtain exact axisymmetric solutions of the dynamical equations. These solutions are consistent with experimental observations on closure rate. Using these solutions we perform linear stability analysis for the contracting ring under non-axisymmetric deformations. Our analysis shows that few low wave number modes, which are unstable during onset of the constriction, later on become stable when the ring shrinks to smaller radii, which is a generic feature of actomyosin ring closure. Our theory also captures how the effective tension in the ring decreases with its radius causing significant slow down in the contraction process at later times.