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Modeling the formation of in vitro filopodia

机译:模拟体外丝状伪足的形成

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摘要

Filopodia are bundles of actin filaments that extend out ahead of the leading edge of a crawling cell to probe its upcoming environment. In vitro experiments (Vignjevic et al. in J Cell Biol 160:951–962, 2003) have determined the minimal ingredients required for the formation of filopodia from the dendritic-like morphology of the leading edge. We model these experiments using kinetic aggregation equations for the density of growing bundle tips. In mean field, we determine the bundle size distribution to be broad for bundle sizes smaller than a characteristic bundle size above which the distribution decays exponentially. Two-dimensional simulations incorporating both bundling and cross-linking measure a bundle size distribution that agrees qualitatively with mean field. The simulations also demonstrate a nonmonotonicity in the radial extent of the dendritic region as a function of capping protein concentration, as was observed in experiments, due to the interplay between percolation and the ratcheting of growing filaments off a spherical obstacle.
机译:丝足虫是肌动蛋白丝束,它们延伸到爬行细胞的前端之前,以探测其即将到来的环境。体外实验(Vignjevic等人,J Cell Biol 160:951-962,2003)已经确定了从前缘的树突状形态形成丝状伪足所需的最少成分。我们使用动力学聚集方程对生长的束尖端的密度进行建模。在平均场中,对于小于特征束尺寸的束尺寸,我们确定束尺寸分布较宽,在特征束尺寸之上,束分布呈指数衰减。结合了捆绑和交联的二维模拟测量的捆绑尺寸分布与平均场定性相符。模拟还表明,由于渗透和生长的长丝从球形障碍物的棘齿之间的相互作用,树突区域的径向范围的非单调性是封端蛋白浓度的函数,如在实验中观察到的。

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