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合成具有羟亚乙基等排体的强效 BACE-1 抑制剂作为核心。

Synthesis of potent BACE-1 inhibitors incorporating a hydroxyethylene isostere as central core.

机构信息

Department of Chemistry, Linköping University, SE-581 83 Linköping, Sweden.

出版信息

Eur J Med Chem. 2010 Mar;45(3):870-82. doi: 10.1016/j.ejmech.2009.11.013. Epub 2009 Nov 12.

Abstract

We herein describe the design and synthesis of a series of BACE-1 inhibitors incorporating a P1-substituted hydroxylethylene transition state isostere. The synthetic route starting from commercially available carbohydrates yielded a pivotal lactone intermediate with excellent stereochemical control which subsequently could be diversified at the P1-position. The final inhibitors were optimized using three different amines to provide the residues in the P2'-P3' position and three different acids affording the residues in the P2-P3 position. In addition we report on the stereochemical preference of the P1'-methyl substituent in the synthesized inhibitors. All inhibitors were evaluated in an in vitro BACE-1 assay where the most potent inhibitor, 34-(R), exhibited a BACE-1 IC(50) value of 3.1 nM.

摘要

我们在此描述了一系列 BACE-1 抑制剂的设计和合成,其中包含了 P1 取代的羟亚乙基过渡态类似物。该合成路线从商业可得的碳水化合物开始,得到了具有极好立体化学控制的关键内酯中间体,随后可以在 P1 位进行多样化。最终的抑制剂使用三种不同的胺进行优化,以提供 P2'-P3' 位置的残基,并用三种不同的酸提供 P2-P3 位置的残基。此外,我们还报告了合成抑制剂中 P1'-甲基取代基的立体化学偏好。所有抑制剂都在体外 BACE-1 测定中进行了评估,其中最有效的抑制剂 34-(R),其 BACE-1 IC50 值为 3.1 nM。

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