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Fluid Phase Coexistence in Biological Membrane: Insights from Local Nonaffine Deformation of Lipids

机译:生物膜中的液相共存:脂质局部nonaffine变形的见解。

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摘要

Lateral heterogeneities in biomembranes play a crucial role in various physiological functions of the cell. Such heterogeneities lead to demixing of lipid constituents and formation of distinct liquid domains in the membrane. We study lateral heterogeneities in terms of topological rearrangements of lipids to identify the liquid-liquid phase coexistence in model membranes. Using ideas from the physics of amorphous systems and glasses, we calculate the degree of nonaffine deformation associated with individual lipids to characterize the liquid-ordered (Lo) and liquid-disordered (Ld) regions in model lipid bilayers. We explore the usage of this method on all-atom and coarse-grained lipid bilayer trajectories. This method is helpful in defining the instantaneous Lo − Ld domain boundaries in complex multicomponent bilayer systems. The characterization is also used to highlight the effect of line-active molecules on the phase boundaries and domain mixing. Overall, we propose a framework to explore the molecular origin of spatial and dynamical heterogeneity in biomembrane systems, which can be exploited not only in computer simulations but also in experiments.
机译:生物膜的横向异质性在细胞的各种生理功能中起着至关重要的作用。这种异质性导致脂质成分的混合以及在膜中形成独特的液体结构域。我们研究脂质的拓扑重排方面的横向异质性,以确定模型膜中的液-液相共存。使用来自非晶系统和玻璃的物理学思想,我们计算与单个脂质相关的非仿射变形程度,以表征模型脂质双层中的液体有序(Lo)和液体无序(Ld)区域。我们探索了这种方法在全原子和粗颗粒脂质双层轨迹上的使用。此方法有助于定义复杂的多组分双层系统中的瞬时Lo-Ld域边界。该表征还用于突出线活性分子对相界和畴混合的影响。总体而言,我们提出了一个框架来探索生物膜系统中空间和动态异质性的分子起源,该框架不仅可以在计算机模拟中使用,而且可以在实验中使用。

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