Department of Organic Chemistry, Arrhenius Laboratory, Stockholm University, SE-106 91 Stockholm, Sweden.
Bioorg Med Chem. 2010 Feb 15;18(4):1711-23. doi: 10.1016/j.bmc.2009.12.051. Epub 2010 Jan 11.
In a preceding study we have described the development of a new hydroxyethylene (HE) core motif displaying P1 aryloxymethyl and P1' methoxy substituents delivering potent BACE-1 inhibitors. In a continuation of this work we have now explored the SAR of the S1' pocket by introducing a set of P1' alkoxy groups and evaluated them as BACE-1 inhibitors. Previously the P1 and P1' positions of the classical HE template have been relatively little explored due to the complexity of the chemical routes involved in modifications at these positions. However, the chemistries developed for the current HE template renders substituents in both the P1 and P1' positions readily available for SAR exploration. The BACE-1 inhibitors prepared displayed K(i) values in the range of 1-20 nM, where the most potent compounds featured small P1' groups. The cathepsin D selectivity which was high for the smallest P1' substituents (P1'=ethoxy, fold selectively >1500) dropped for larger groups (P1'=benzyloxy, fold selectivity of 3). We have also confirmed the importance of both the hydroxyl group and its stereochemistry preference for this HE transition state isostere by preparing both the deoxygenated analogue and by inverting the configuration of the hydroxyl group to the R-configuration, which as expected resulted in large activity drops. Finally substituting the hydroxyl group by an amino group having the same configuration (S), which previously have been described to deliver potent BACE-1 inhibitors with advantageous properties, surprisingly resulted in a large drop in the inhibitory activity.
在之前的研究中,我们描述了一种新型羟乙基(HE)核心结构的开发,该结构显示出 P1 芳氧甲基和 P1' 甲氧基取代基,可提供有效的 BACE-1 抑制剂。在这项工作的延续中,我们现在通过引入一组 P1' 烷氧基基团来探索 S1' 口袋的 SAR,并将其评估为 BACE-1 抑制剂。以前,由于涉及这些位置的化学修饰的复杂性,经典 HE 模板的 P1 和 P1' 位置相对较少被探索。然而,当前 HE 模板开发的化学方法使 P1 和 P1' 位置的取代基都可用于 SAR 探索。制备的 BACE-1 抑制剂的 K(i) 值在 1-20 nM 范围内,其中最有效的化合物具有较小的 P1' 基团。对于最小的 P1' 取代基(P1'=乙氧基,折叠选择性 >1500),细胞色素 D 的选择性很高,但对于较大的基团(P1'=苄氧基,折叠选择性为 3)则降低。我们还通过制备脱氧类似物并将羟基的构型反转到 R-构型,确认了羟基及其立体化学偏好对这种 HE 过渡态等排体的重要性,这正如预期的那样导致了活性的大幅下降。最后,用具有相同构型(S)的氨基取代羟基,这之前被描述为提供具有有利性质的有效 BACE-1 抑制剂,令人惊讶的是,抑制活性大幅下降。