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首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Recognition dynamics of trinuclear copper cluster and associated histidine residues through conserved or semi-conserved water molecules in human Ceruloplasmin: The involvement of aspartic and glutamic acid gates
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Recognition dynamics of trinuclear copper cluster and associated histidine residues through conserved or semi-conserved water molecules in human Ceruloplasmin: The involvement of aspartic and glutamic acid gates

机译:Trinclear铜簇的识别动态和人体帽子中的保守或半保守水分子的相关组氨酸残基:天冬氨酸和谷氨酸浇口的累积

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摘要

Human Ceruloplasmin belongs to the family of multi-copper oxidases and it is involved in different physiological processes, copper ion transport, iron metabolism, iron homeostasis, and biogenic amine metabolism. MD-simulation studies have indicated the higher hydrophilic susceptibility of the trinuclear copper cluster in native CP compared to its oxygen bound form. The copper (T2/T3) atom Cu3047 of the cluster, which is close to T1 copper center Cu3052 (similar to 13 angstrom) has a higher affinity for water molecules compared to other copper centers. The water molecules of W3, W4, W5, W9, and W12 conserved water sites are coordinated to Cu3047, where W3, W9, and W12 centers are found to play some crucial role in the stabilization of native trinuclear copper cluster. The hydrogen bonding interaction of Asp169, Glu112, Asp995, and Glu1032 residues with the copper-bound conserved water molecules (W3, W4, W5, W10, and W11) in native CP is observed to be unique. The conformational flexibility of Asp169 and Glu112 and their association with the copper-bound water molecules, but the absence of such interaction in O-2-bound simulated structure of the enzyme is indicating some plausible rational on the role of these acidic residues in the gating of O-2 molecule in the native trinuclear Cu cluster of CP. The simulation results may shade some new light on the biochemistry/chemistry of CP, specially on the hydration dynamics of the trinuclear copper cluster.
机译:人刺激物属于多铜氧化酶的家族,它涉及不同的生理过程,铜离子转运,铁代谢,铁袜和生物胺代谢。 MD模拟研究表明,与其氧染色形式相比,天然CP中的三核铜簇的亲水性易感性较高。与其他铜中心相比,簇接近T1铜中心Cu3052(类似于13埃)的簇的铜(T2 / T3)原子Cu3047对水分子具有更高的亲和力。 W3,W4,W5,W9和W12保守水位的水分子与Cu3047协调,其中发现W3,W9和W12中心在天然三核铜簇的稳定中发挥着一些至关重要的作用。 ASP169,GLU112,ASP995和GLU1032残基与用铜结合的保守水分子(W3,W4,W5,W10)的氢键相互作用被观察到天然CP中的铜粘合的水分子(W3,W4,W11)是独特的。 ASP169和Glu112的构象灵活性及其与铜结合的水分子的关系,但是酶O-2结合模拟结构中没有这种相互作用表明这些酸性残基在门控中的作用具有一些合理的理性理性CP天然三核Cu簇中的O-2分子。仿真结果可能会在CP的生物化学/化学物质上遮蔽一些新的光线,特别是TrincleclectCol铜簇的水化动态。

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