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首页> 外文期刊>PLoS Computational Biology >Membrane Sculpting by F-BAR Domains Studied by Molecular Dynamics Simulations
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Membrane Sculpting by F-BAR Domains Studied by Molecular Dynamics Simulations

机译:分子动力学模拟研究的F-BAR结构域的膜雕刻

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摘要

Interplay between cellular membranes and their peripheral proteins drives many processes in eukaryotic cells. Proteins of the Bin/Amphiphysin/Rvs (BAR) domain family, in particular, play a role in cellular morphogenesis, for example curving planar membranes into tubular membranes. However, it is still unclear how F-BAR domain proteins act on membranes. Electron microscopy revealed that, in vitro, F-BAR proteins form regular lattices on cylindrically deformed membrane surfaces. Using all-atom and coarse-grained (CG) molecular dynamics simulations, we show that such lattices, indeed, induce tubes of observed radii. A 250 ns all-atom simulation reveals that F-BAR domain curves membranes via the so-called scaffolding mechanism. Plasticity of the F-BAR domain permits conformational change in response to membrane interaction, via partial unwinding of the domains 3-helix bundle structure. A CG simulation covering more than 350 μs provides a dynamic picture of membrane tubulation by lattices of F-BAR domains. A series of CG simulations identified the optimal lattice type for membrane sculpting, which matches closely the lattices seen through cryo-electron microscopy.
机译:细胞膜与其外周蛋白之间的相互作用驱动了真核细胞中的许多过程。箱/倍体/ RVS(棒)结构域系列的蛋白质,特别是在细胞形态发生中起作用,例如将平面膜弯曲成管状膜。然而,尚不清楚F-Bar结构域蛋白在膜上是如何作用的。电子显微镜显示,在体外,F-Bar蛋白在圆柱形变形膜表面上形成常规格子。使用全原子和粗粒(CG)分子动力学模拟,我们表明这种格子,实际上,诱导观察到的半径的管。 A 250 NS全原子仿真显示F-Bar域通过所谓的脚手架机构弯曲膜。 F-Bar结构域的可塑性通过域3-Helix束结构的部分展开,响应膜相互作用响应响应于膜相互作用而允许构象变化。 CG模拟覆盖超过350μs的CG通过F-Bar结构域的格子提供了膜管的动态图片。一系列CG模拟确定了膜雕刻的最佳格子类型,这与通过冷冻电子显微镜观察的格子密切相关。

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