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Effect of the Crystal Environment on Side-Chain Conformational Dynamics in Cyanovirin-N Investigated through Crystal and Solution Molecular Dynamics Simulations

机译:晶体环境对氰维林-N侧链构象动力学的影响通过晶体和溶液分子动力学模拟研究

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摘要

Side chains in protein crystal structures are essential for understanding biochemical processes such as catalysis and molecular recognition. However, crystal packing could influence side-chain conformation and dynamics, thus complicating functional interpretations of available experimental structures. Here we investigate the effect of crystal packing on side-chain conformational dynamics with crystal and solution molecular dynamics simulations using Cyanovirin-N as a model system. Side-chain ensembles for solvent-exposed residues obtained from simulation largely reflect the conformations observed in the X-ray structure. This agreement is most striking for crystal-contacting residues during crystal simulation. Given the high level of correspondence between our simulations and the X-ray data, we compare side-chain ensembles in solution and crystal simulations. We observe large decreases in conformational entropy in the crystal for several long, polar and contacting residues on the protein surface. Such cases agree well with the average loss in conformational entropy per residue upon protein folding and are accompanied by a change in side-chain conformation. This finding supports the application of surface engineering to facilitate crystallization. Our simulation-based approach demonstrated here with Cyanovirin-N establishes a framework for quantitatively comparing side-chain ensembles in solution and in the crystal across a larger set of proteins to elucidate the effect of the crystal environment on protein conformations.
机译:蛋白质晶体结构中的侧链对于理解生化过程(例如催化和分子识别)至关重要。但是,晶体堆积会影响侧链构象和动力学,从而使可用实验结构的功能解释变得复杂。在这里,我们使用Cyanovirin-N作为模型系统,通过晶体和溶液分子动力学模拟研究了晶体堆积对侧链构象动力学的影响。通过模拟获得的溶剂暴露残基的侧链结构在很大程度上反映了在X射线结构中观察到的构象。对于晶体模拟过程中与晶体接触的残留物,此协议最引人注目。考虑到我们的仿真与X射线数据之间的高度对应关系,我们比较了溶液仿真和晶体仿真中的侧链集成。我们观察到蛋白质表面上几个长的,极性的和接触的残基的晶体构象熵大大降低。这种情况与蛋白质折叠时每个残基的构象熵的平均损失非常吻合,并伴有侧链构象的变化。这一发现支持了表面工程技术的应用,以促进结晶。我们在此处使用Cyanovirin-N演示的基于仿真的方法建立了一个框架,该框架可定量比较溶液和晶体中较大一组蛋白质上的侧链集成体,以阐明晶体环境对蛋白质构象的影响。

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