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新型人血管黏附蛋白-1 肼抑制剂的合成、体外活性及三维定量构效关系。

Synthesis, in vitro activity, and three-dimensional quantitative structure-activity relationship of novel hydrazine inhibitors of human vascular adhesion protein-1.

机构信息

Department of Biological and Environmental Science & Nanoscience Center, PO Box 35, FI-40014 University of Jyvaskyla, Finland.

出版信息

J Med Chem. 2010 Sep 9;53(17):6301-15. doi: 10.1021/jm100337z.

Abstract

Vascular adhesion protein-1 (VAP-1) belongs to the semicarbazide-sensitive amine oxidases (SSAOs) that convert amines into aldehydes. SSAOs are distinct from the mammalian monoamine oxidases (MAOs), but their substrate specificities are partly overlapping. VAP-1 has been proposed as a target for anti-inflammatory drug therapy because of its role in leukocyte adhesion to endothelium. Here, we describe the synthesis and in vitro activities of novel series of VAP-1 selective inhibitors. In addition, the molecular dynamics simulations performed for VAP-1 reveal that the movements of Met211, Ser496, and especially Leu469 can enlarge the ligand-binding pocket, allowing larger ligands than those seen in the crystal structures to bind. Combining the data from molecular dynamics simulations, docking, and in vitro measurements, the three-dimensional quantitative structure-activity relationship (3D QSAR) models for VAP-1 (q(2)(LOO): 0.636; r(2): 0.828) and MAOs (q(2)(LOO): 0.749, r(2): 0.840) were built and employed in the development of selective VAP-1 inhibitors.

摘要

血管黏附蛋白-1(VAP-1)属于半脒基敏感胺氧化酶(SSAOs),可将胺转化为醛。SSAOs 与哺乳动物单胺氧化酶(MAOs)不同,但它们的底物特异性有部分重叠。由于 VAP-1 在白细胞黏附到内皮细胞中的作用,因此被提议作为抗炎药物治疗的靶点。在这里,我们描述了一系列新型 VAP-1 选择性抑制剂的合成和体外活性。此外,对 VAP-1 进行的分子动力学模拟表明,Met211、Ser496 和特别是 Leu469 的运动可以扩大配体结合口袋,允许比晶体结构中看到的更大的配体结合。结合分子动力学模拟、对接和体外测量的数据,构建了 VAP-1(q²(LOO):0.636;r²:0.828)和 MAOs(q²(LOO):0.749,r²:0.840)的三维定量构效关系(3D QSAR)模型,并用于开发选择性 VAP-1 抑制剂。

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