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溶液中蛋白质溶液结构计算:钙结合蛋白D9k的溶剂化分子动力学精修

Protein solution structure calculations in solution: solvated molecular dynamics refinement of calbindin D9k.

作者信息

Kördel J, Pearlman D A, Chazin W J

机构信息

Pharmacia & Upjohn, Stockholm, Sweden.

出版信息

J Biomol NMR. 1997 Oct;10(3):231-43. doi: 10.1023/a:1018383102870.

Abstract

The three-dimensional solution structures of proteins determined with NMR-derived constraints are almost always calculated in vacuo. The solution structure of (Ca2+)2-calbindin D9k has been redetermined by new restrained molecular dynamics (MD) calculations that include Ca2+ ions and explicit solvent molecules. Four parallel sets of MD refinements were run to provide accurate comparisons of structures produced in vacuo, in vacuo with Ca2+ ions, and with two different protocols in a solvent bath with Ca2+ ions. The structural ensembles were analyzed in terms of structural definition, molecular energies, packing density, solvent-accessible surface, hydrogen bonds, and the coordination of calcium ions in the two binding loops. Refinement including Ca2+ ions and explicit solvent results in significant improvements in the precision and accuracy of the structure, particularly in the binding loops. These results are consistent with results previously obtained in free MD simulations of proteins in solution and show that the rMD refined NMR-derived solution structures of proteins, especially metalloproteins, can be significantly improved by these strategies.

摘要

利用核磁共振衍生约束条件确定的蛋白质三维溶液结构几乎总是在真空条件下计算得出的。(Ca2+)2 - 钙结合蛋白D9k的溶液结构已通过新的受限分子动力学(MD)计算重新确定,该计算包括Ca2+离子和明确的溶剂分子。进行了四组平行的MD精修,以准确比较在真空、含Ca2+离子的真空、以及在含Ca2+离子的溶剂浴中采用两种不同方案所产生的结构。从结构定义、分子能量、堆积密度、溶剂可及表面、氢键以及两个结合环中钙离子的配位等方面对结构系综进行了分析。包含Ca2+离子和明确溶剂的精修显著提高了结构的精度和准确性,尤其是在结合环方面。这些结果与之前在蛋白质溶液自由MD模拟中获得的结果一致,表明通过这些策略可以显著改善基于rMD精修的核磁共振衍生蛋白质溶液结构,尤其是金属蛋白的结构。

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