4.7 Article

Structure-activity relationships of α-ketooxazole inhibitors of fatty acid amide hydrolase

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JOURNAL OF MEDICINAL CHEMISTRY
卷 50, 期 14, 页码 3359-3368

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AMER CHEMICAL SOC
DOI: 10.1021/jm061414r

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  1. NIDA NIH HHS [R01 DA015648-05, R01 DA015648, R01 DA015197, P01 DA017259, DA015197, DA017259, DA15648] Funding Source: Medline

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A systematic study of the structure-activity relationships of 2b (OL-135), a potent inhibitor of fatty acid amide hydrolase (FAAH), is detailed targeting the C2 acyl side chain. A series of aryl replacements or substituents for the terminal phenyl group provided effective inhibitors (e.g., 5c, aryl = 1- napthyl, K-i = 2.6 nM), with 5hh (aryl = 3-ClPh, K-i = 900 pM) being 5-fold more potent than 2b. Conformationally restricted C2 side chains were examined, and many provided exceptionally potent inhibitors, of which 11j (ethylbiphenyl side chain) was established to be a 750 pM inhibitor. A systematic series of heteroatoms (O, NMe, S), electron-withdrawing groups (SO, SO2), and amides positioned within and hydroxyl substitutions on the linking side chain were investigated, which typically led to a loss in potency. The most tolerant positions provided effective inhibitors (12p, 6-position S, K-i = 3 nM, or 13d, 2-position OH, K-i = 8 nM) comparable in potency to 2b. Proteome-wide screening of selected inhibitors from the systematic series of > 100 candidates prepared revealed that they are selective for FAAH over all other mammalian serine proteases.

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