Aguayo Daniel, González-Nilo Fernando D, Chipot Christophe
Centro de Bioinformática y Simulación Molecular, Facultad de Ingeniería en Bioinformática, Universidad de Talca , 2 Norte 685, Casilla 721, Talca, Chile.
Centro de Bioinformática y Biología Integrativa, Facultad de Ciencias Biológicas, Universidad Andrés Bello , República 239, Santiago, Chile.
J Chem Theory Comput. 2012 May 8;8(5):1765-73. doi: 10.1021/ct200849k. Epub 2012 Apr 24.
Simulation of three models of cardiolipin (CL) containing membranes using a new set of parameters for tetramyristoyl and tetraoleoyl CLs has been developed in the framework of the united-atom CHARMM27-UA and the all-atom CHARMM36 force fields with the aim of performing molecular dynamics (MD) simulations of cardiolipin-containing mixed-lipid membranes. The new parameters use a hybrid representation of all-atom head groups in conjunction with implicit-hydrogen united-atom (UA) to describe the oleoyl and myristoyl chains of the CLs, in lieu of the fully atomistic description, thereby allowing longer simulations to be undertaken. The physicochemical properties of the bilayers were determined and compared with previously reported data. Furthermore, using tetramyristoyl CL mixed with POPG and POPE lipids, a mitochondrial membrane was simulated. The results presented here show the different behavior of the bilayers as a result of the lipid composition, where the length of the acyl chain and the conformation of the headgroup can be associated with the mitochondrial membrane properties. The new hybrid CL parameters prove to be well suited for the simulation of the molecular structure of CL-containing bilayers and can be extended to other lipid bilayers composed of CLs with different acyl chains or alternate head groups.
在联合原子CHARMM27-UA和全原子CHARMM36力场框架下,利用一组针对四肉豆蔻酰基和四油酰基心磷脂(CL)的新参数,开发了三种含心磷脂(CL)膜模型的模拟方法,目的是对含心磷脂的混合脂质膜进行分子动力学(MD)模拟。新参数使用全原子头基团的混合表示法,并结合隐氢联合原子(UA)来描述CL的油酰基和肉豆蔻酰基链,取代了完全原子描述,从而能够进行更长时间的模拟。测定了双层膜的物理化学性质,并与先前报道的数据进行了比较。此外,使用四肉豆蔻酰基CL与POPG和POPE脂质混合,模拟了线粒体膜。这里给出的结果显示了由于脂质组成不同,双层膜的行为也不同,其中酰基链的长度和头基团的构象可能与线粒体膜的性质有关。新的混合CL参数被证明非常适合模拟含CL双层膜的分子结构,并且可以扩展到由具有不同酰基链或交替头基团的CL组成的其他脂质双层膜。