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心磷脂在线粒体内膜中的作用:通过原子尺度模拟获得的见解。

Role of cardiolipins in the inner mitochondrial membrane: insight gained through atom-scale simulations.

作者信息

Róg Tomasz, Martinez-Seara Hector, Munck Nana, Oresic Matej, Karttunen Mikko, Vattulainen Ilpo

机构信息

Department of Physics, Tampere University of Technology, Temrpere, Finland.

出版信息

J Phys Chem B. 2009 Mar 19;113(11):3413-22. doi: 10.1021/jp8077369.

Abstract

Mitochondrial membranes are unique in many ways. Unlike other cellular membranes, they are comprised of two membranes instead of just one, and cardiolipins, one of the abundant lipid species in mitochondrial membranes, are not found in significant amounts elsewhere in the cell. Among other aspects, the exceptional nature of cardiolipins is characterized by their small charged head group connected to typically four hydrocarbon chains. In this work, we present atomic-scale molecular dynamics simulations of the inner mitochondrial membrane modeled as a mixture of cardiolipins (CLs), phosphatidylcholines (PCs), and phosphatidylethanolamines (PEs). For comparison, we also consider pure one-component bilayers and mixed PC-PE, PC-CL, and PE-CL membranes. We find that the influence of CLs on membrane properties depends strongly on membrane composition. This is highlighted by studies of the stability of CL-containing membranes, which indicate that the interactions of CL in ternary lipid bilayers cannot be deduced from the corresponding ones in binary membranes. Moreover, while the membrane properties in the hydrocarbon region are only weakly affected by CLs, the changes at the membrane-water interface turn out to be prominent. The effects at the interface are most evident in membrane properties related to hydrogen bonding and the binding phenomena associated with electrostatic interactions.

摘要

线粒体膜在许多方面都很独特。与其他细胞膜不同,它们由两层膜组成而非一层,并且心磷脂是线粒体膜中含量丰富的脂质种类之一,在细胞的其他地方含量并不显著。在其他方面,心磷脂的特殊性质表现为其带电荷的小头部基团连接着通常四条烃链。在这项工作中,我们展示了以内膜线粒体膜为模型的原子尺度分子动力学模拟,该内膜由心磷脂(CLs)、磷脂酰胆碱(PCs)和磷脂酰乙醇胺(PEs)混合而成。为作比较,我们还考虑了纯的单组分双层膜以及混合的PC - PE、PC - CL和PE - CL膜。我们发现CLs对膜性质的影响在很大程度上取决于膜的组成。这在对含CLs膜稳定性的研究中得到了突出体现,这些研究表明三元脂质双层中CL的相互作用无法从二元膜中的相应相互作用推导得出。此外,虽然烃区域的膜性质仅受到CLs的微弱影响,但膜 - 水界面处的变化却很显著。界面处的影响在与氢键以及与静电相互作用相关的结合现象有关的膜性质中最为明显。

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