Aittoniemi Jussi, Niemelä Perttu S, Hyvönen Marja T, Karttunen Mikko, Vattulainen Ilpo
Laboratory of Physics and Helsinki Institute of Physics, Helsinki University of Technology, Helsinki, Finland.
Biophys J. 2007 Feb 15;92(4):1125-37. doi: 10.1529/biophysj.106.088427. Epub 2006 Nov 17.
The effects of cholesterol (Chol) on phospholipid bilayers include ordering of the fatty acyl chains, condensing of the lipids in the bilayer plane, and promotion of the liquid-ordered phase. These effects depend on the type of phospholipids in the bilayer and are determined by the nature of the underlying molecular interactions. As for Chol, it has been shown to interact more favorably with sphingomyelin than with most phosphatidylcholines, which in given circumstances leads to formation of lateral domains. However, the exact origin and nature of Chol-phospholipid interactions have recently been subjects of speculation. We examine interactions between Chol, palmitoylsphingomyelin (PSM) and palmitoyl-oleoyl-phosphatidylcholine (POPC) in hydrated lipid bilayers by extensive atom-scale molecular dynamics simulations. We employ a tailored lipid configuration: Individual PSM and Chol monomers, as well as PSM-Chol dimers, are embedded in a POPC lipid bilayer in the liquid crystalline phase. Such a setup allows direct comparison of dimeric and monomeric PSMs and Chol, which ultimately shows how the small differences in PSM and POPC structure can lead to profoundly different interactions with Chol. Our analysis shows that direct hydrogen bonding between PSM and Chol does not provide an adequate explanation for their putative specific interaction. Rather, a combination of charge-pairing, hydrophobic, and van der Waals interactions leads to a lower tilt in PSM neighboring Chol than in Chol with only POPC neighbors. This implies improved Chol-induced ordering of PSM's chains over POPC's chains. These findings are discussed in the context of the hydrophobic mismatch concept suggested recently.
胆固醇(Chol)对磷脂双层的影响包括使脂肪酰链有序排列、在双层平面内使脂质凝聚以及促进液晶相的形成。这些影响取决于双层中磷脂的类型,并由潜在分子相互作用的性质决定。至于胆固醇,已表明它与鞘磷脂的相互作用比与大多数磷脂酰胆碱的相互作用更有利,在特定情况下这会导致侧向结构域的形成。然而,胆固醇 - 磷脂相互作用的确切起源和性质最近一直是推测的主题。我们通过广泛的原子尺度分子动力学模拟研究了水合脂质双层中胆固醇、棕榈酰鞘磷脂(PSM)和棕榈酰油酰磷脂酰胆碱(POPC)之间的相互作用。我们采用了一种定制的脂质构型:将单个PSM和Chol单体以及PSM - Chol二聚体嵌入液晶相的POPC脂质双层中。这样的设置允许直接比较二聚体和单体形式的PSM和Chol,最终展示了PSM和POPC结构上的微小差异如何导致与Chol产生截然不同的相互作用。我们的分析表明,PSM和Chol之间的直接氢键并不能充分解释它们假定的特异性相互作用。相反,电荷配对、疏水和范德华相互作用的组合导致与Chol相邻的PSM的倾斜度低于仅与POPC相邻的Chol的倾斜度。这意味着与POPC的链相比,Chol诱导的PSM的链的有序性得到改善。这些发现是在最近提出的疏水不匹配概念的背景下进行讨论的。