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几种非甾体抗炎药与人类前列腺素内过氧化物合酶-2(h-PGHS-2)之间差异相互作用的分子模拟

Molecular modelling of the differential interaction between several non-steroidal anti-inflammatory drugs and human prostaglandin endoperoxide H synthase-2 (h-PGHS-2).

作者信息

Pouplana R, Lozano J J, Ruiz J

机构信息

Departament de Fisicoquímica, Facultat de Farmàcia, Universitat de Barcelona, Spain.

出版信息

J Mol Graph Model. 2002 Jan;20(4):329-43. doi: 10.1016/s1093-3263(01)00133-4.

Abstract

The prostaglandin endoperoxide H synthase-1 (PGHS-1) and prostaglandin endoperoxide H synthase-2 (PGHS-2) are the targets of non-steroidal anti-inflammatory drugs (NSAIDs). The high degree of selectivity for inhibition of PGHS-2 shown by certain compounds appears to stem from two mechanisms (time-dependent, time-independent inhibition) by which they interact with each isoform. Molecular models of the complexes between indomethacin, fenamates, 2-phenylpropionic acids and the selective cyclooxygenase-2 (COX-2) inhibitors, with the cyclooxygenase active site of human PGHS-2 have been built by combining homology modelling, conformational searching and automated docking techniques. The stability of the resulting complexes has been assessed by molecular dynamics simulations combined with extended linear response calculations. The results allow us to identify regions of biological significance consistent with both X-ray crystallographic and kinetic results. The selective PGHS-2 inhibitors exploit the extra space of a side-pocket in the active site of PGHS-2 that is not found in PGHS-1. The results obtained point out a marked relationship between the experimental affinity and the electrostatic interaction energy alone for a series of NSAIDs. Analysis of the structural and the energetic data provides evidence supporting that network of hydrogen bonds between Tyr355, Glu524, Arg120 and Arg513 might be involved in mediating the binding of the time-dependent inhibitors of PGHS-2.

摘要

前列腺素内过氧化物H合酶-1(PGHS-1)和前列腺素内过氧化物H合酶-2(PGHS-2)是非甾体抗炎药(NSAIDs)的作用靶点。某些化合物对PGHS-2抑制作用的高度选择性似乎源于它们与每种同工型相互作用的两种机制(时间依赖性、非时间依赖性抑制)。通过结合同源建模、构象搜索和自动对接技术,构建了吲哚美辛、芬那酸盐、2-苯丙酸与选择性环氧化酶-2(COX-2)抑制剂与人PGHS-2环氧化酶活性位点之间复合物的分子模型。通过分子动力学模拟结合扩展线性响应计算评估了所得复合物的稳定性。这些结果使我们能够确定与X射线晶体学和动力学结果一致的具有生物学意义的区域。选择性PGHS-2抑制剂利用了PGHS-2活性位点中一个侧袋的额外空间,而PGHS-1中没有这个侧袋。所得结果指出了一系列NSAIDs的实验亲和力与仅静电相互作用能之间的显著关系。对结构和能量数据的分析提供了证据,支持Tyr355、Glu524、Arg120和Arg513之间的氢键网络可能参与介导PGHS-2时间依赖性抑制剂的结合。

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