Department of Mechanical Engineering, University of Maryland, College Park, Maryland, United States of America.
Laboratory of Molecular Biology, National Cancer Institute, National Institutes of Health, Bethesda, Maryland, United States of America.
PLoS One. 2020 Dec 30;15(12):e0244460. doi: 10.1371/journal.pone.0244460. eCollection 2020.
Flip-flop of lipids of the lipid bilayer (LBL) constituting the plasma membrane (PM) plays a crucial role in a myriad of events ranging from cellular signaling and regulation of cell shapes to cell homeostasis, membrane asymmetry, phagocytosis, and cell apoptosis. While extensive research has been conducted to probe the lipid flip flop of planar lipid bilayers (LBLs), less is known regarding lipid flip-flop for highly curved, nanoscopic LBL systems despite the vast importance of membrane curvature in defining the morphology of cells and organelles and in maintaining a variety of cellular functions, enabling trafficking, and recruiting and localizing shape-responsive proteins. In this paper, we conduct molecular dynamics (MD) simulations to study the energetics, structure, and configuration of a lipid molecule undergoing flip-flop and desorption in a highly curved LBL, represented as a nanoparticle-supported lipid bilayer (NPSLBL) system. We compare our findings against those of a planar substrate supported lipid bilayer (PSSLBL). Our MD simulation results reveal that despite the vast differences in the curvature and other curvature-dictated properties (e.g., lipid packing fraction, difference in the number of lipids between inner and outer leaflets, etc.) between the NPSLBL and the PSSLBL, the energetics of lipid flip-flop and lipid desorption as well as the configuration of the lipid molecule undergoing lipid flip-flop are very similar for the NPSLBL and the PSSLBL. In other words, our results establish that the curvature of the LBL plays an insignificant role in lipid flip-flop and desorption.
脂质双层(LBL)的脂质翻转在从细胞信号转导和细胞形状调节到细胞内稳态、膜不对称性、吞噬作用和细胞凋亡等各种事件中起着至关重要的作用。虽然已经进行了广泛的研究来探测平面脂质双层(LBL)的脂质翻转,但对于高度弯曲的纳米尺度 LBL 系统的脂质翻转知之甚少,尽管膜曲率在定义细胞和细胞器的形态以及维持各种细胞功能、促进运输以及招募和定位形状响应蛋白方面具有重要意义。在本文中,我们进行了分子动力学(MD)模拟,以研究在高度弯曲的 LBL 中,代表为纳米粒子支撑的脂质双层(NPSLBL)系统中的脂质分子发生翻转和去吸附的能量、结构和构型。我们将我们的发现与平面底物支撑的脂质双层(PSSLBL)进行了比较。我们的 MD 模拟结果表明,尽管 NPSLBL 和 PSSLBL 之间的曲率和其他曲率决定的性质(例如,脂质堆积分数、内外叶层之间的脂质数量差异等)存在巨大差异,但脂质翻转和脂质去吸附的能量以及发生脂质翻转的脂质分子的构型在 NPSLBL 和 PSSLBL 中非常相似。换句话说,我们的结果表明 LBL 的曲率在脂质翻转和去吸附中起着微不足道的作用。