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钙离子泵的分子动力学模拟:结构分析。

Molecular dynamics simulations of the Ca2+-pump: a structural analysis.

机构信息

Department of Chemistry, Norwegian University of Science and Technology, Trondheim, Norway.

出版信息

Phys Chem Chem Phys. 2012 Mar 14;14(10):3543-53. doi: 10.1039/c2cp23002j. Epub 2012 Feb 3.

Abstract

We report large scale molecular dynamics computer simulations, ∼100 ns, of the ion pump Ca(2+)-ATPase immersed in a 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphocholine (POPC) bilayer. The structure simulated here, E1, one of the several conformations resolved using X-ray diffraction techniques, hosts two Ca(2+)-ions in the hydrophobic domain. Our results indicate that protonated residues lead to stronger ion-residue interactions, supporting previous conclusions regarding the sensitivity of the Ca(2+) behaviour to the protonated state of the amino acid binding sites. We also investigate how the protein perturbs the bilayer structure. We show that the POPC bilayer is ∼12% thinner than the pure bilayer, near the protein surface. This perturbation decays exponentially with the distance from the protein with a characteristic decay length of 0.8 nm. We find that the projected area per lipid also decreases near the protein. Using an analytical model we show that this change in the area is only apparent and it can be explained by considering the local curvature of the membrane. Our results indicate that the real area per lipid near the protein is not significantly modified with respect to the pure bilayer result. Further our results indicate that the local deformation of the membrane around the protein might be compatible with the enhanced protein activity observed in experiments over a narrow range of membrane thicknesses.

摘要

我们报告了在 1-棕榈酰-2-油酰-sn-甘油-3-磷酸胆碱(POPC)双层中模拟 Ca(2+)-ATP 酶的大规模分子动力学计算机模拟,约 100 ns。这里模拟的结构 E1 是使用 X 射线衍射技术解析的几个构象之一,在疏水区中容纳了两个 Ca(2+)离子。我们的结果表明,质子化残基导致离子-残基相互作用更强,这支持了先前关于 Ca(2+)行为对氨基酸结合位点质子化状态的敏感性的结论。我们还研究了蛋白质如何干扰双层结构。我们表明,靠近蛋白质表面的 POPC 双层比纯双层薄约 12%。这种扰动随距离蛋白质的距离呈指数衰减,特征衰减长度为 0.8nm。我们发现靠近蛋白质时每个脂质的投影面积也会减小。使用分析模型,我们表明这种面积的变化只是表观上的,可以通过考虑膜的局部曲率来解释。我们的结果表明,靠近蛋白质的每个脂质的实际面积与纯双层结果相比没有明显改变。此外,我们的结果表明,蛋白质周围膜的局部变形可能与实验中观察到的在狭窄的膜厚度范围内增强的蛋白质活性兼容。

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