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Simulations of membranes and other interfacial systems using P2(1) and Pc periodic boundary conditions.

机译:使用P2(1)和Pc周期性边界条件模拟膜和其他界面系统。

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摘要

We demonstrate the ease and utility of simulating heterogeneous interfacial systems with P2(1) and Pc periodic boundary conditions which allow, for example, lipids in a membrane to switch leaflets. In preliminary tests, P2(1) was shown to yield equivalent results to P1 in simulations of bulk water, a water/vacuum interface, and pure DPPC bilayers with an equal number of lipids per leaflet; equivalence of Pc and P1 was also demonstrated for the former two systems. P2(1) was further tested in simulations involving the spreading of an octane film on water, and equilibration of a DPPC bilayer from an initial condition containing different numbers of lipids in the two leaflets. Lastly, a simulation in P2(1) of a DOPC/melittin membrane showed significant passage of lipids to the melittin-containing leaflet from the initial distribution, and lends insight into the condensation of lipids by melittin.
机译:我们证明了使用P2(1)和Pc周期性边界条件模拟异构界面系统的简便性和实用性,这些条件允许例如膜中的脂质切换小叶。在初步测试中,P2(1)在模拟散装水,水/真空界面以及每张小叶上具有相同数量脂质的纯DPPC双层的模拟中显示出与P1等效的结果;前两个系统也证明了Pc和P1的等效性。在模拟中进一步测试了P2(1),包括在水中散布辛烷薄膜,以及从初始状态平衡DPPC双层到两个小叶中包含不同数量脂质的模拟。最后,在DOPC / melittin膜的P2(1)中进行的模拟显示,脂类从最初的分布开始就显着地传递到含有蜂毒素的小叶中,这有助于深入了解蜂毒素对脂质的缩合作用。

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