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羧肽酶A活性腔及其一些抑制剂加合物的分子动力学表征

Molecular dynamics characterization of the active cavity of carboxypeptidase A and some of its inhibitor adducts.

作者信息

Banci L, Schröder S, Kollman P A

机构信息

Department of Chemistry, University of Florence, Italy.

出版信息

Proteins. 1992 Aug;13(4):288-305. doi: 10.1002/prot.340130403.

Abstract

Molecular dynamics (MD) calculations have been performed on carboxypeptidase A and on its adducts with inhibitors, such as d-phenylalanine (dPhe) and acetate. The catalytically essential zinc ion present in the protein was explicitly included in all the simulations. The simulation was carried out over a sphere of 15 A centered on the zinc ion. The crystallographic water molecules were explicitly taken into account; then the protein was solvated with a 18 A sphere of water molecules. MD calculations were carried out for 45-60 ps. There is no large deviation from the available X-ray structures of native and the dPhe adduct for the MD structures. Average MD structures were calculated starting from the X-ray structure of the dPhe adduct, and, from a structure obtained by docking the inhibitor in the native structure. Comparison between these two structures and with that of the native protein shows that some of the key variations produced by inhibitor binding are reproduced by MD calculations. Addition of acetate induces structural changes relevant for the understanding of the interaction network in the active cavity. The structural variations induced by different inhibitors are examined. The effects of these interactions on the catalytic mechanism and on the binding of substrate are discussed.

摘要

已对羧肽酶A及其与抑制剂(如d-苯丙氨酸(dPhe)和乙酸盐)的加合物进行了分子动力学(MD)计算。蛋白质中存在的催化必需锌离子在所有模拟中均被明确包含。模拟在以锌离子为中心的15埃球体上进行。明确考虑了晶体学水分子;然后用18埃的水分子球体使蛋白质溶剂化。MD计算进行了45 - 60皮秒。MD结构与天然和dPhe加合物的现有X射线结构没有大的偏差。从dPhe加合物的X射线结构以及通过将抑制剂对接至天然结构获得的结构开始计算平均MD结构。这两种结构与天然蛋白质结构的比较表明,抑制剂结合产生的一些关键变化通过MD计算得以重现。添加乙酸盐会引起与理解活性腔中相互作用网络相关的结构变化。研究了不同抑制剂引起的结构变化。讨论了这些相互作用对催化机制和底物结合的影响。

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