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Structure-Activity Relationship Studies of ?-Ketoamides as Inhibitors of the Phospholipase A and Acyltransferase Enzyme Family.


ABSTRACT: The phospholipase A and acyltransferase (PLAAT) family of cysteine hydrolases consists of five members, which are involved in the Ca2+-independent production of N-acylphosphatidylethanolamines (NAPEs). NAPEs are lipid precursors for bioactive N-acylethanolamines (NAEs) that are involved in various physiological processes such as food intake, pain, inflammation, stress, and anxiety. Recently, we identified ?-ketoamides as the first pan-active PLAAT inhibitor scaffold that reduced arachidonic acid levels in PLAAT3-overexpressing U2OS cells and in HepG2 cells. Here, we report the structure-activity relationships of the ?-ketoamide series using activity-based protein profiling. This led to the identification of LEI-301, a nanomolar potent inhibitor for the PLAAT family members. LEI-301 reduced the NAE levels, including anandamide, in cells overexpressing PLAAT2 or PLAAT5. Collectively, LEI-301 may help to dissect the physiological role of the PLAATs.

SUBMITTER: Zhou J 

PROVIDER: S-EPMC7498158 | biostudies-literature | 2020 Sep

REPOSITORIES: biostudies-literature

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The phospholipase A and acyltransferase (PLAAT) family of cysteine hydrolases consists of five members, which are involved in the Ca<sup>2+</sup>-independent production of <i>N</i>-acylphosphatidylethanolamines (NAPEs). NAPEs are lipid precursors for bioactive <i>N</i>-acylethanolamines (NAEs) that are involved in various physiological processes such as food intake, pain, inflammation, stress, and anxiety. Recently, we identified α-ketoamides as the first pan-active PLAAT inhibitor scaffold that  ...[more]

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