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A curvilinear Model Approach: Actin Cortex Clustering Due to ATP-induced Myosin Pulls

机译:曲线模型方法:由于ATP诱导的肌球蛋白拉动,肌动蛋白皮层聚集

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Abstract: The actomyosin cortex is involved in a range of many cellular processes like cell division, motility or shaping. To obtain this variety of functionalities the membrane-bound actin mesh has to be reconstituted by the motor protein myosin. But little is known about the underlying mechanism, which control the different tasks. An underlying in vitro study of a synthetic actomyosin cortex has shown that the cortex organizes into spatial clusters for certain ATP concentrations. Here we develop a curvilinear model that captures the viscoelastic material behavior and the kinetics of the myosin cross bridge. Further, we suggest a formulation for the active contractile stress produced by the motor protein myosin. We demonstrate that the spatial pattern generated by the curvilinear model is consistent with the experimental observations, including mesh clustering due to contractile forces and an absence of contraction for low and high ATP concentrations. Additionally we show that the cluster positioning can be tuned by the ATP-gradient.
机译:摘要:放线菌素皮层涉及许多细胞过程,例如细胞分裂,运动或成形。为了获得多种功能,膜结合的肌动蛋白网必须由运动蛋白肌球蛋白重建。但是对于控制不同任务的底层机制知之甚少。合成肌动球蛋白皮层的基础体外研究表明,对于某些ATP浓度,皮层组织成空间簇。在这里,我们开发了一个曲线模型,该模型捕获了粘弹性材料的行为和肌球蛋白跨桥的动力学。此外,我们提出了由运动蛋白肌球蛋白产生的主动收缩应激的制剂。我们证明了由曲线模型生成的空间模式与实验观察结果一致,包括由于收缩力和低和高ATP浓度而没有收缩的网格聚类。此外,我们显示可以通过ATP梯度来调整群集的位置。

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