Siani P, de Souza R M, Dias L G, Itri R, Khandelia H
MEMPHYS-Center for Biomembrane Physics, Department of Physics and Chemistry, University of Southern, Denmark; Departamento de Química, FFCLRP, Universidade de São Paulo, Ribeirão Preto, SP, Brazil.
Departamento de Química, FFCLRP, Universidade de São Paulo, Ribeirão Preto, SP, Brazil.
Biochim Biophys Acta. 2016 Oct;1858(10):2498-2511. doi: 10.1016/j.bbamem.2016.03.031. Epub 2016 Apr 6.
Biological membranes and model lipid systems containing high amounts of unsaturated lipids and sterols are subject to chemical and/or photo-induced lipid oxidation, which leads to the creation of exotic oxidized lipid products (OxPLs). OxPLs are known to have significant physiological impact in cellular systems and also affect physical properties of both biological and model lipid bilayers. In this paper we (i) provide a perspective on the existing literature on simulations of lipid bilayer systems containing oxidized lipid species as well as the main related experimental results, (ii) describe our new data of all-atom and coarse-grained simulations of hydroperoxidized lipid monolayer and bilayer systems and (iii) provide a comparison of the MARTINI and ELBA coarse grained force fields for lipid bilayer systems. We show that the better electrostatic treatment of interactions in ELBA is able to resolve previous conflicts between experiments and simulations. This article is part of a Special Issue entitled: Biosimulations edited by Ilpo Vattulainen and Tomasz Róg.
含有大量不饱和脂质和甾醇的生物膜及模型脂质系统易受到化学和/或光诱导的脂质氧化作用,这会导致生成奇特的氧化脂质产物(OxPLs)。已知OxPLs在细胞系统中具有显著的生理影响,并且还会影响生物脂质双层和模型脂质双层的物理性质。在本文中,我们(i)对现有关于包含氧化脂质物种的脂质双层系统模拟的文献以及主要相关实验结果进行了综述,(ii)描述了氢过氧化脂质单层和双层系统的全原子和粗粒度模拟的新数据,以及(iii)对脂质双层系统的MARTINI和ELBA粗粒度力场进行了比较。我们表明,ELBA中对相互作用更好的静电处理能够解决先前实验与模拟之间的矛盾。本文是由Ilpo Vattulainen和Tomasz Róg编辑的名为《生物模拟》的特刊的一部分。