Suppr超能文献

环状酰胍类化合物作为高效、选择性β-淀粉样肽 cleaving 酶(BACE)抑制剂的发现:第一部分——抑制剂设计与验证。

Discovery of cyclic acylguanidines as highly potent and selective beta-site amyloid cleaving enzyme (BACE) inhibitors: Part I--inhibitor design and validation.

机构信息

Department of Medicinal Chemistry, Schering-Plough Research Institute, 2015 Galloping Hill Road, Kenilworth, New Jersey 07033, USA.

出版信息

J Med Chem. 2010 Feb 11;53(3):951-65. doi: 10.1021/jm901408p.

Abstract

A number of novel amidine containing heterocycles were designed to reproduce the unique interaction pattern, revealed by X-ray crystallography, between the BACE-1 catalytic diad and a weak NMR screening hit (3), with special attention paid to maintaining the appropriate basicity and limiting the number of H-bonding donors of these scaffolds. The iminohydantoin cores (10 and 23) were examined first and found to interact with the catalytic diad in one of two binding modes (A and B), each with the iminohydantoin core flipped 180 degrees in relation to the other. The amidine structural motif within each core forms a bidentate interaction with a different aspartic acid of the catalytic diad. Both modes reproduced a highly conserved interaction pattern between the inhibitors and the catalytic aspartates, as revealed by 3. Potent iminohydantoin BACE-1 inhibitors have been obtained, validating the molecular design as aspartyl protease catalytic site inhibitors. Brain penetrant small molecule BACE inhibitors with high ligand efficiencies have been discovered, enabling multiple strategies for further development of these inhibitors into highly potent, selective and in vivo efficacious BACE inhibitors.

摘要

设计了许多新型的含脒基的杂环化合物,以再现 BACE-1 催化二联体和弱 NMR 筛选命中物(3)之间通过 X 射线晶体学揭示的独特相互作用模式,特别注意保持这些支架的适当碱性并限制氢键供体的数量。首先检查了亚氨基二氢嘧啶核心(10 和 23),发现它们以两种结合模式(A 和 B)之一与催化二联体相互作用,每个核心中的亚氨基二氢嘧啶核心相对于另一个翻转 180 度。每个核心中的脒基结构基序与催化二联体的不同天冬氨酸形成双配位相互作用。两种模式都再现了抑制剂与催化天冬氨酸之间高度保守的相互作用模式,正如 3 所揭示的那样。已经获得了有效的亚氨基二氢嘧啶 BACE-1 抑制剂,验证了作为天冬氨酸蛋白酶催化位点抑制剂的分子设计。已经发现了具有高配体效率的穿透脑的小分子 BACE 抑制剂,为进一步将这些抑制剂开发为高效、选择性和体内有效的 BACE 抑制剂提供了多种策略。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验