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The interaction of phospholipase A2 with a phospholipid bilayer: coarse-grained molecular dynamics simulations.

机译:磷脂酶A2与磷脂双层的相互作用:粗粒分子动力学模拟。

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摘要

A number of membrane-active enzymes act in a complex environment formed by the interface between a lipid bilayer and bulk water. Although x-ray diffraction studies yield structures of isolated enzyme molecules, a detailed characterization of their interactions with the interface requires a measure of how deeply such a membrane-associated protein penetrates into a lipid bilayer. Here, we apply coarse-grained (CG) molecular dynamics (MD) simulations to probe the interaction of porcine pancreatic phospholipase A2 (PLA2) with a lipid bilayer containing palmitoyl-oleoyl-phosphatidyl choline and palmitoyl-oleoyl-phosphatidyl glycerol molecules. We also used a configuration from a CG-MD trajectory to initiate two atomistic (AT) MD simulations. The results of the CG and AT simulations are evaluated by comparison with available experimental data. The membrane-binding surface of PLA2 consists of a patch of hydrophobic residues surrounded by polar and basic residues. We show this proposed footprint interacts preferentially with the anionic headgroups of the palmitoyl-oleoyl-phosphatidyl glycerol molecules. Thus, both electrostatic and hydrophobic interactions determine the location of PLA2 relative to the bilayer. From a general perspective, this study demonstrates that CG-MD simulations may be used to reveal the orientation and location of a membrane-surface-bound protein relative to a lipid bilayer, which may subsequently be refined by AT-MD simulations to probe more detailed interactions.
机译:许多膜活性酶在由脂双层和大量水之间的界面形成的复杂环境中起作用。尽管X射线衍射研究产生了分离的酶分子的结构,但要详细表征它们与界面的相互作用,则需要测量这种与膜相关的蛋白质渗入脂质双层的深度。在这里,我们应用粗粒度(CG)分子动力学(MD)模拟来探究猪胰磷脂酶A2(PLA2)与含有棕榈酰基-油酰基-磷脂酰胆碱和棕榈酰基-油酰基-磷脂酰甘油分子的脂质双层的相互作用。我们还使用了CG-MD轨迹中的配置来启动两个原子(AT)MD仿真。通过与可用的实验数据进行比较,评估了CG和AT模拟的结果。 PLA2的膜结合表面由被极性和碱性残基包围的疏水残基组成。我们显示该拟议的足迹优先与棕榈酰基-油酰基-磷脂酰甘油分子的阴离子头基相互作用。因此,静电和疏水相互作用都决定了PLA2相对于双层的位置。从一般的角度来看,这项研究表明,CG-MD模拟可用于揭示膜表面结合蛋白相对于脂质双层的方向和位置,随后可通过AT-MD模拟进行精炼以探查更详细的信息。互动。

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