膜介导的蛋白-蛋白相互作用:蒙特卡洛研究

J. Neder, B. West, P. Nielaba, F. Schmid
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引用次数: 10

摘要

我们使用粗粒度模型研究跨膜蛋白之间膜介导的相互作用。我们比较了两种蛋白质之间的有效平均力势(PMF),这两种蛋白质总是平行于模拟盒的z轴排列,与那些具有波动方向的蛋白质的PMF进行比较。PMFs主要由振荡包装驱动的贡献和光滑吸引的疏水错配贡献,如果蛋白质的疏水长度与膜的厚度匹配,则该贡献消失。如果允许蛋白质取向波动,与固定取向的蛋白质相比,振荡大大减少。疏水失配相互作用的范围较小。最后,我们将两种蛋白质周围的二维厚度分布与两层耦合单层弹性理论的预测进行了比较,发现它们非常吻合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Membrane-mediated protein-protein interaction: A Monte Carlo study
We investigate membrane-mediated interactions between transmembrane proteins using coarse-grained models. We compare the effective potential of mean force (PMF) between two proteins, which are always aligned parallel to the z-axis of the simulation box, with those PMFs obtained for proteins with fluctuating orientations. The PMFs are dominated by an oscillatory packing-driven contribution and a smooth attractive hydrophobic mismatch contribution, which vanishes if the hydrophobic length of the protein matches the thickness of the membrane. If protein orientations are allowed to fluctuate, the oscillations are greatly reduced compared to proteins with fixed orientation. Furthermore, the hydrophobic mismatch interaction has a smaller range. Finally, we compare the two-dimensional thickness profiles around two proteins with the predictions from the elastic theory of two coupled monolayers, and find them to be in very good agreement.
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