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N 端乙酰化 α-突触核蛋白中的铜(II)结合位点:理论阐释

Copper(II) Binding Sites in N-Terminally Acetylated α-Synuclein: A Theoretical Rationalization.

作者信息

Ramis Rafael, Ortega-Castro Joaquín, Vilanova Bartolomé, Adrover Miquel, Frau Juan

机构信息

Departament de Química, Institut Universitari d'Investigació en Ciències de la Salut (IUNICS), Universitat de les Illes Balears Palma de Mallorca , 07122 Palma, Spain.

Instituto de Investigación Sanitaria de Palma (IdISPA) , 07010 Palma, Spain.

出版信息

J Phys Chem A. 2017 Aug 3;121(30):5711-5719. doi: 10.1021/acs.jpca.7b03165. Epub 2017 Jul 19.

DOI:10.1021/acs.jpca.7b03165
PMID:28691818
Abstract

The interactions between N-terminally acetylated α-synuclein and Cu(II) at several binding sites have been studied with DFT calculations, specifically with the M06 hybrid functional and the ωB97X-D DFT-D functional. In previous experimental studies, Cu(II) was shown to bind several α-synuclein residues, including Met1-Asp2 and His50, forming square planar coordination complexes. Also, it was determined that a low-affinity binding site exists in the C-terminal domain, centered on Asp121. However, in the N-terminally acetylated protein, present in vivo, the Met1 site is blocked. In this work, we simplify the representation of the protein by modeling each experimentally found binding site as a complex between an N-terminally acetylated α-synuclein dipeptide (or several independent residues) and a Cu(II) cation, and compare the results with a number of additional, structurally analogous sites not experimentally found. This way of representing the binding sites, although extremely simple, allows us to reproduce experimental results and to provide a theoretical rationale to explain the preference of Cu(II) for certain sites, as well as explicit geometrical structures for the complexes formed. These results are important to understand the interactions between α-synuclein and Cu(II), one of the factors inducing structural changes in the protein and leading to aggregated forms of it which may play a role in neurodegeneration.

摘要

通过密度泛函理论(DFT)计算,特别是使用M06杂化泛函和ωB97X-D DFT-D泛函,研究了N端乙酰化α-突触核蛋白与铜(II)在几个结合位点的相互作用。在先前的实验研究中,已表明铜(II)可结合多个α-突触核蛋白残基,包括Met1-Asp2和His50,形成平面正方形配位络合物。此外,还确定在以Asp121为中心的C端结构域中存在一个低亲和力结合位点。然而,在体内存在的N端乙酰化蛋白中,Met1位点被阻断。在这项工作中,我们通过将每个实验发现的结合位点建模为N端乙酰化α-突触核蛋白二肽(或几个独立残基)与铜(II)阳离子之间的络合物,简化了蛋白质的表示形式,并将结果与许多未通过实验发现的其他结构类似位点进行比较。这种表示结合位点的方式虽然极其简单,但使我们能够重现实验结果,并提供理论依据来解释铜(II)对某些位点的偏好,以及所形成络合物的明确几何结构。这些结果对于理解α-突触核蛋白与铜(II)之间的相互作用非常重要,铜(II)是诱导蛋白质结构变化并导致其聚集形式的因素之一,而这种聚集形式可能在神经退行性变中起作用。

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