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运用比较分子力场分析和X射线结构分析研究人中性粒细胞胶原酶(MMP - 8)抑制剂的定量构效关系。

Quantitative structure-activity relationship of human neutrophil collagenase (MMP-8) inhibitors using comparative molecular field analysis and X-ray structure analysis.

作者信息

Matter H, Schwab W, Barbier D, Billen G, Haase B, Neises B, Schudok M, Thorwart W, Schreuder H, Brachvogel V, Lönze P, Weithmann K U

机构信息

Chemical Research & Core Research Functions, Hoechst Marion Roussel, D-65926 Frankfurt am Main, Germany.

出版信息

J Med Chem. 1999 Jun 3;42(11):1908-20. doi: 10.1021/jm980631s.

DOI:10.1021/jm980631s
PMID:10354399
Abstract

A set of 90 novel 2-(arylsulfonyl)-1,2,3, 4-tetrahydroisoquinoline-3-carboxylates and -hydroxamates as inhibitors of the matrix metalloproteinase human neutrophil collagenase (MMP-8) was designed, synthesized, and investigated by 3D-QSAR techniques (CoMFA, CoMSIA) and X-ray structure analysis. Docking studies of a reference compound are based on crystal structures of MMP-8 complexed with peptidic inhibitors to propose a model of its bioactive conformation. This model was validated by a 1. 7 A X-ray structure of the catalytic domain of MMP-8. The 3D-QSAR models based on a superposition rule derived from these docking studies were validated using conventional and cross-validated r2 values using the leave-one-out method, repeated analyses using two randomly chosen cross-validation groups plus randomization of biological activities. This led to consistent and highly predictive 3D-QSAR models with good correlation coefficients for both CoMFA and CoMSIA, which were found to correspond to experimentally determined MMP-8 catalytic site topology in terms of steric, electrostatic, and hydrophobic complementarity. Subsets selected as smaller training sets using 2D fingerprints and maximum dissimilarity methods resulted in 3D-QSAR models with remarkable correlation coefficients and a high predictive power. This allowed to compensate the weaker zinc binding properties of carboxylates by introducing optimal fitting P1' residues. The final QSAR information agrees with all experimental data for the binding topology and thus provides clear guidelines and accurate activity predictions for novel MMP-8 inhibitors.

摘要

设计、合成了一组90种新型2-(芳基磺酰基)-1,2,3,4-四氢异喹啉-3-羧酸酯和-异羟肟酸酯,作为基质金属蛋白酶人中性粒细胞胶原酶(MMP-8)的抑制剂,并通过三维定量构效关系技术(CoMFA、CoMSIA)和X射线结构分析进行了研究。对一种参考化合物的对接研究基于MMP-8与肽类抑制剂复合的晶体结构,以提出其生物活性构象模型。该模型通过MMP-8催化结构域的1.7 Å X射线结构进行了验证。基于这些对接研究得出的叠加规则建立的三维定量构效关系模型,使用留一法的传统和交叉验证r2值、使用两个随机选择的交叉验证组的重复分析以及生物活性的随机化进行了验证。这导致了一致且具有高度预测性的三维定量构效关系模型,CoMFA和CoMSIA的相关系数都很好,从空间、静电和疏水互补性方面来看,这些模型与实验确定的MMP-8催化位点拓扑结构相对应。使用二维指纹图谱和最大差异方法选择作为较小训练集的子集,得到了具有显著相关系数和高预测能力的三维定量构效关系模型。这使得通过引入最佳拟合的P1'残基来补偿羧酸酯较弱的锌结合特性。最终的定量构效关系信息与结合拓扑结构的所有实验数据一致,从而为新型MMP-8抑制剂提供了明确的指导方针和准确的活性预测。

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