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Design, synthesis, and qualitative structure-activity evaluations of novel β-secretase inhibitors as potential Alzheimer's drug leads

机译:新型β-分泌酶抑制剂作为潜在的阿尔茨海默氏病药物线索的设计,合成和定性结构活性评估

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摘要

We have identified highly selective imidazopyr-idines armed with benzimidazol and/or arylimidazole as potent β-secretase inhibitors. The most effective and selective analogues demonstrated low nanomolar potency for the BACE1 enzyme as measured by FRET and cell-based (ELISA) assays and exhibited comparable affinity (K_I) and high ligand efficiency (LE). In addition, these motifs were highly selective (>200) against the structurally related aspartyl protease BACE2. Our design strategy followed a traditional SAR approach and was supported by molecular modeling studies based on the previously reported hydroxyethylene transition state inhibitor derived from iso-phthalic acid I. Of the most potent compounds, 34 displayed an IC_(50) for BACE1 of 18 nM and exhibited cellular activity with an EC50 of 37 nM in the cell-based ELISA assay, as well as high affinity (K_I = 17 nM) and ligand efficiency (LE = 1.7 kJ/mol). Compound 34 was found to be 204-fold more selective for BACE1 compared to the closely related aspartyl protease BACE2. (Figure presented)
机译:我们已经确定,与苯并咪唑和/或芳基咪唑结合的高选择性咪唑并吡啶是有效的β-分泌酶抑制剂。如通过FRET和基于细胞的(ELISA)分析所测量,最有效和选择性最高的类似物对BACE1酶具有低纳摩尔浓度,并且具有可比的亲和力(K_I)和高配体效率(LE)。此外,这些基序对结构相关的天冬氨酰蛋白酶BACE2具有高度选择性(> 200)。我们的设计策略遵循传统的SAR方法,并基于先前报道的衍生自间苯二甲酸I的羟乙烯过渡态抑制剂的分子建模研究提供了支持。在最有效的化合物中,34个化合物的BACE1的IC_(50)为18 nM并在基于细胞的ELISA分析中表现出EC50为37 nM的细胞活性,以及​​高亲和力(K_I = 17 nM)和配体效率(LE = 1.7 kJ / mol)。发现与紧密相关的天冬氨酰蛋白酶BACE2相比,化合物34对BACE1的选择性高204倍。 (图示)

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