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Monolayer curvature stabilizes nanoscale raft domains in mixed lipid bilayers

机译:单层曲率稳定混合脂质双层中的纳米级筏域。

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摘要

According to the lipid raft hypothesis, biological lipid membranes are laterally heterogeneous and filled with nanoscale ordered “raft” domains, which are believed to play an important role for the organization of proteins in membranes. However, the mechanisms stabilizing such small rafts are not clear, and even their existence is sometimes questioned. Here, we report the observation of raft-like structures in a coarse-grained molecular model for multicomponent lipid bilayers. On small scales, our membranes demix into a liquid ordered (lo) phase and a liquid disordered (ld) phase. On large scales, phase separation is suppressed and gives way to a microemulsion-type state that contains nanometer-sized lo domains in an ld environment. Furthermore, we introduce a mechanism that generates rafts of finite size by a coupling between monolayer curvature and local composition. We show that mismatch between the spontaneous curvatures of monolayers in the lo and ld phases induces elastic interactions, which reduce the line tension between the lo and ld phases and can stabilize raft domains with a characteristic size of the order of a few nanometers. Our findings suggest that rafts in multicomponent bilayers might be closely related to the modulated ripple phase in one-component bilayers.
机译:根据脂质筏假说,生物脂质膜在横向上是异质的,并充满了纳米级有序“筏”结构域,据信这些结构域对膜中蛋白质的组织起着重要作用。然而,稳定这种小木筏的机制尚不明确,有时甚至质疑它们的存在。在这里,我们报告在多组分脂质双层的粗粒分子模型中的筏状结构的观察。在小规模的情况下,我们的膜会分解成有序的液相(lo)和无序的液相(ld)。大规模地,相分离被抑制,并且在ld环境中被包含纳米尺寸lo域的微乳液型状态所取代。此外,我们介绍了一种通过单层曲率和局部组成之间的耦合生成有限大小的筏的机制。我们表明,lo和ld相中单层的自发曲率之间的不匹配会引起弹性相互作用,从而降低lo和ld相之间的线张力,并且可以稳定具有数纳米量级特征的筏域。我们的发现表明,多组分双层中的筏可能与单组分双层中的调制波纹相密切相关。

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