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高分辨率中子和 X 射线衍射室温研究 H-FABP-油酸复合物:通过转移多极电子密度分布研究内部水簇和配体结合。

High-resolution neutron and X-ray diffraction room-temperature studies of an H-FABP-oleic acid complex: study of the internal water cluster and ligand binding by a transferred multipolar electron-density distribution.

机构信息

Department of Integrative Biology, Institut de Génétique et de Biologie Moléculaire et Cellulaire, Centre de Biologie Intégrative, CNRS, INSERM, UdS, 1 rue Laurent Fries, 67404 Illkirch CEDEX, France; Instituto de Fisica de Liquidos y Sistemas Biologicos, CONICET, UNLP, Calle 59 No. 789, La Plata, Argentina.

CNRS and Université de Lorraine, Laboratoire CRM2, UMR 7036, Vandoeuvre-lès-Nancy, F-54506, France.

出版信息

IUCrJ. 2016 Jan 16;3(Pt 2):115-26. doi: 10.1107/S2052252515024161. eCollection 2016 Mar 1.

Abstract

Crystal diffraction data of heart fatty acid binding protein (H-FABP) in complex with oleic acid were measured at room temperature with high-resolution X-ray and neutron protein crystallography (0.98 and 1.90 Å resolution, respectively). These data provided very detailed information about the cluster of water molecules and the bound oleic acid in the H-FABP large internal cavity. The jointly refined X-ray/neutron structure of H-FABP was complemented by a transferred multipolar electron-density distribution using the parameters of the ELMAMII library. The resulting electron density allowed a precise determination of the electrostatic potential in the fatty acid (FA) binding pocket. Bader's quantum theory of atoms in molecules was then used to study interactions involving the internal water molecules, the FA and the protein. This approach showed H⋯H contacts of the FA with highly conserved hydrophobic residues known to play a role in the stabilization of long-chain FAs in the binding cavity. The determination of water hydrogen (deuterium) positions allowed the analysis of the orientation and electrostatic properties of the water molecules in the very ordered cluster. As a result, a significant alignment of the permanent dipoles of the water molecules with the protein electrostatic field was observed. This can be related to the dielectric properties of hydration layers around proteins, where the shielding of electrostatic interactions depends directly on the rotational degrees of freedom of the water molecules in the interface.

摘要

使用高分辨率 X 射线和中子蛋白晶体学(分别为 0.98 和 1.90 Å 的分辨率)在室温下测量了与油酸结合的心脏脂肪酸结合蛋白(H-FABP)的晶体衍射数据。这些数据提供了关于 H-FABP 大内腔中水分子簇和结合油酸的非常详细的信息。使用 ELMAMII 库的参数,通过转移多极电子密度分布,共同精修了 H-FABP 的 X 射线/中子结构。得到的电子密度允许精确确定 FA 结合口袋中的静电势。然后使用量子原子分子理论(Bader's quantum theory of atoms in molecules)来研究涉及内部水分子、FA 和蛋白质的相互作用。这种方法表明,FA 与高度保守的疏水性残基之间存在 H⋯H 接触,这些残基已知在稳定结合腔中的长链 FA 中发挥作用。确定水氢(氘)的位置允许分析非常有序的簇中水分子的取向和静电特性。结果,观察到水分子与蛋白质静电场的永久偶极子明显对齐。这可能与蛋白质周围水合层的介电特性有关,其中静电相互作用的屏蔽直接取决于界面处水分子的旋转自由度。

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