首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Behavior of Bilayer Leaflets in Asymmetric Model Membranes: Atomistic Simulation Studies
【24h】

Behavior of Bilayer Leaflets in Asymmetric Model Membranes: Atomistic Simulation Studies

机译:双层小叶在不对称模型膜中的行为:原子模拟研究

获取原文
获取原文并翻译 | 示例
           

摘要

Spatial organization within lipid bilayers is an important feature for a range of biological processes. Leaflet compositional asymmetry and lateral lipid organization are just two of the ways in which membrane structure appears to be more complex than initially postulated by the fluid mosaic model. This raises the question of how the phase behavior in one bilayer leaflet may affect the apposing leaflet and how one begins to construct asymmetric model systems to investigate these interleaflet interactions. Here we report on all-atom molecular dynamics simulations (a total of 4.1 mu s) of symmetric and asymmetric bilayer systems composed of liquid-ordered (Lo) or liquid-disordered (Ld) leaflets, based on the nanodomain-forming POPC/DSPC/cholesterol system. We begin by analyzing an asymmetric bilayer with leaflets derived from simulations of symmetric Lo and Ld bilayers. In this system, we observe that the properties of the Lo and Ld leaflets corresponding symmetric systems. However, it is not obvious that mixing the equilibrium structures of their symmetric counterparts is the most appropriate way to construct asymmetric bilayers nor that these structures will manifest interleaflet couplings that lead to domain registry/antiregistry. We therefore constructed and simulated four additional asymmetric bilayer systems by systematically adding or removing lipids in the Ld leaflet to mimic potential density fluctuations. We find that the number of lipids in the Ld leaflet affects its own properties, as well as those of the apposing Lo leaflet. Collectively, the simulations reveal the presence of weak acyl chain interdigitation across bilayer leaflets, suggesting that interdigitation alone does not contribute significantly to the interleaflet coupling in nonphase-separated bilayers of this chemical composition. However, the properties of both leaflets appear to be sensitive to changes in in-plane lipid packing, possibly providing a mechanism for interleaflet coupling by modulating local density and/or curvature fluctuations.
机译:脂质双层中的空间组织是一系列生物学过程的重要特征。小叶的成分不对称和侧向脂质组织只是膜结构看起来比流体镶嵌模型最初假定的更为复杂的两种方式。这就提出了一个问题,即一个双层小叶中的相行为如何可能影响相对的小叶,以及一个人如何开始构建不对称模型系统来研究这些小叶间的相互作用。在这里,我们报告基于纳米域形成的POPC / DSPC的由液体有序(Lo)或液体无序(Ld)小叶组成的对称和不对称双层系统的全原子分子动力学模拟(共4.1μs) /胆固醇系统。我们首先通过从对称Lo和Ld双层模拟中获得的传单分析不对称双层。在此系统中,我们观察到Lo和Ld小叶的属性对应于对称系统。但是,不明显的是,混合对称对等体的平衡结构是构造不对称双层的最合适方法,也不是这些结构会表现出导致域注册/反注册的叶间偶联。因此,我们通过系统地添加或去除Ld小叶中的脂质以模拟潜在的密度波动,构建并模拟了四个附加的不对称双层系统。我们发现,Ld小叶中的脂质数量会影响其自身的特性以及与之相对应的Lo小叶的特性。总的来说,模拟揭示了跨双层小叶存在弱的酰基链交叉指,表明仅交叉指对这种化学成分的非相分离双层中的叶间偶联没有明显贡献。然而,两个小叶的性质似乎都对平面脂质堆积的变化敏感,可能通过调节局部密度和/或曲率波动提供了叶间偶联的机制。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号