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铜蓝蛋白分子动力学模拟中的活性位点建模

Active site modeling in copper azurin molecular dynamics simulations.

作者信息

Rizzuti Bruno, Swart Marcel, Sportelli Luigi, Guzzi Rita

机构信息

Dipartimento di Fisica and Unità INFM, Laboratorio di Biofisica Molecolare, Università della Calabria, Ponte P. Bucci, Cubo 30C, 87030 Rende CS, Italy.

出版信息

J Mol Model. 2004 Feb;10(1):25-31. doi: 10.1007/s00894-003-0165-6. Epub 2003 Dec 23.

Abstract

Active site modeling in molecular dynamics simulations is investigated for the reduced state of copper azurin. Five simulation runs (5 ns each) were performed at room temperature to study the consequences of a mixed electrostatic/constrained modeling for the coordination between the metal and the polypeptide chain, using for the ligand residues a set of charges that is modified with respect to the apo form of the protein by the presence of the copper ion. The results show that the different charge values do not lead to relevant effects on the geometry of the active site of the protein, as long as bond distance constraints are used for all the five ligand atoms. The distance constraint on the O atom of Gly45 can be removed without altering the active site geometry. The coordination between Cu and the other axial ligand Met121 is outlined as being flexible. Differences are found between the bonds of the copper ion with the two apparently equivalent N(delta1) atoms of His46 and His117. The overall findings are discussed in connection with the issue of determining a model for the active site of azurin suitable to be used in molecular dynamics simulations under unfolding conditions.

摘要

针对铜蓝蛋白的还原态,研究了分子动力学模拟中的活性位点建模。在室温下进行了五次模拟运行(每次5纳秒),以研究混合静电/约束建模对金属与多肽链之间配位的影响,对于配体残基,使用一组因铜离子存在而相对于蛋白质的脱辅基形式进行了修改的电荷。结果表明,只要对所有五个配体原子使用键距约束,不同的电荷值不会对蛋白质活性位点的几何形状产生相关影响。Gly45的O原子上的距离约束可以去除而不改变活性位点的几何形状。铜与另一个轴向配体Met121之间的配位被概述为具有灵活性。发现铜离子与His46和His117的两个明显等效的N(δ1)原子之间的键存在差异。结合确定适合在展开条件下用于分子动力学模拟的铜蓝蛋白活性位点模型的问题,对总体研究结果进行了讨论。

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