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分子动力学模拟中CorA选择性过滤器中Mg(2+)的内外配位层

Inner and Outer Coordination Shells of Mg(2+) in CorA Selectivity Filter from Molecular Dynamics Simulations.

作者信息

Kitjaruwankul Sunan, Wapeesittipan Pattama, Boonamnaj Panisak, Sompornpisut Pornthep

机构信息

Graduate School of Nanoscience and Technology, Chulalongkorn University , Bangkok 10330, Thailand.

Department of Chemistry, Faculty of Science, Chulalongkorn University , Bangkok 10330, Thailand.

出版信息

J Phys Chem B. 2016 Jan 28;120(3):406-17. doi: 10.1021/acs.jpcb.5b10925. Epub 2016 Jan 19.

Abstract

Structural data of CorA Mg(2+) channels show that the five Gly-Met-Asn (GMN) motifs at the periplasmic loop of the pentamer structure form a molecular scaffold serving as a selectivity filter. Unfortunately, knowledge about the cation selectivity of Mg(2+) channels remains limited. Since Mg(2+) in aqueous solution has a strong first hydration shell and apparent second hydration sphere, the coordination structure of Mg(2+) in a CorA selectivity filter is expected to be different from that in bulk water. Hence, this study investigated the hydration structure and ligand coordination of Mg(2+) in a selectivity filter of CorA using molecular dynamics (MD) simulations. The simulations reveal that the inner-shell structure of Mg(2+) in the filter is not significantly different from that in aqueous solution. The major difference is the characteristic structural features of the outer shell. The GMN residues engage indirectly in the interactions with the metal ion as ligands in the second shell of Mg(2+). Loss of hydrogen bonds between inner- and outer-shell waters observed from Mg(2+) in bulk water is mostly compensated by interactions between waters in the first solvation shell and the GMN motif. Some water molecules in the second shell remain in the selectivity filter and become less mobile to support the metal binding. Removal of Mg(2+) from the divalent cation sensor sites of the protein had an impact on the structure and metal binding of the filter. From the results, it can be concluded that the GMN motif enhances the affinity of the metal binding site in the CorA selectivity filter by acting as an outer coordination ligand.

摘要

CorA镁离子通道的结构数据表明,五聚体结构周质环处的五个甘氨酸-甲硫氨酸-天冬酰胺(GMN)基序形成了一个作为选择性过滤器的分子支架。遗憾的是,关于镁离子通道阳离子选择性的知识仍然有限。由于水溶液中的镁离子有一个强大的第一水合层和明显的第二水合球,因此预计CorA选择性过滤器中镁离子的配位结构与大量水中的不同。因此,本研究使用分子动力学(MD)模拟研究了CorA选择性过滤器中镁离子的水合结构和配体配位。模拟结果表明,过滤器中镁离子的内壳层结构与水溶液中的没有显著差异。主要区别在于外壳层的特征结构。GMN残基在镁离子的第二壳层中作为配体间接参与与金属离子的相互作用。从大量水中的镁离子观察到的内壳层和外壳层水之间氢键的丧失,大多由第一溶剂化层中的水与GMN基序之间的相互作用来补偿。第二壳层中的一些水分子留在选择性过滤器中,流动性降低以支持金属结合。从蛋白质的二价阳离子传感位点去除镁离子对过滤器的结构和金属结合有影响。从结果可以得出结论,GMN基序通过作为外部配位配体增强了CorA选择性过滤器中金属结合位点的亲和力。

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