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FtsZ protein on bilayer membranes: Effects of specific lateral bonds

机译:FtsZ蛋白在双层膜上:特定的侧键的影响

摘要

We use a simple lattice model to explore the self-assembled structures of protein filaments. Monte Carlo simulations show polymorphic structures, formed by the competition between the bundling of filaments, their branching and the spontaneous curvature. In the top-down approach, typical of statistical physics, we compare the simulation results with experimental atomic force microscopy images of the bacterial protein FtsZ anchored on bilayer membranes. We identify the relevant aspects of the interactions between protein monomers, which are amplified as a collective effect of the whole system. From the perspective of soft-matter physics, the experimental system and its model representation provide an interesting example of living polymers with tunable interactions. © 2013 The Royal Society of Chemistry.
机译:我们使用一个简单的晶格模型来探索蛋白丝的自组装结构。蒙特卡洛模拟显示多态结构,由丝束的束缚,分支和自发曲率之间的竞争形成。在自上而下的方法中,我们采用统计物理的典型方法,将模拟结果与锚定在双层膜上的细菌蛋白FtsZ的实验原子力显微镜图像进行了比较。我们确定了蛋白质单体之间相互作用的相关方面,这些方面被放大为整个系统的集体效应。从软物质物理学的角度来看,实验系统及其模型表示法提供了一个有趣的具有可调相互作用的活性聚合物示例。 ©2013皇家化学学会。

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