Adibekian_2011_Nat.Chem.Biol_7_469

Reference

Title : Click-generated triazole ureas as ultrapotent in vivo-active serine hydrolase inhibitors - Adibekian_2011_Nat.Chem.Biol_7_469
Author(s) : Adibekian A , Martin BR , Wang C , Hsu KL , Bachovchin DA , Niessen S , Hoover H , Cravatt BF
Ref : Nat Chemical Biology , 7 :469 , 2011
Abstract :

Serine hydrolases are a diverse enzyme class representing approximately 1% of all human proteins. The biological functions of most serine hydrolases remain poorly characterized owing to a lack of selective inhibitors to probe their activity in living systems. Here we show that a substantial number of serine hydrolases can be irreversibly inactivated by 1,2,3-triazole ureas, which show negligible cross-reactivity with other protein classes. Rapid lead optimization by click chemistry-enabled synthesis and competitive activity-based profiling identified 1,2,3-triazole ureas that selectively inhibit enzymes from diverse branches of the serine hydrolase class, including peptidases (acyl-peptide hydrolase, or APEH), lipases (platelet-activating factor acetylhydrolase-2, or PAFAH2) and uncharacterized hydrolases (alpha,beta-hydrolase-11, or ABHD11), with exceptional potency in cells (sub-nanomolar) and mice (<1 mg kg(-1)). We show that APEH inhibition leads to accumulation of N-acetylated proteins and promotes proliferation in T cells. These data indicate 1,2,3-triazole ureas are a pharmacologically privileged chemotype for serine hydrolase inhibition, combining broad activity across the serine hydrolase class with tunable selectivity for individual enzymes.

PubMedSearch : Adibekian_2011_Nat.Chem.Biol_7_469
PubMedID: 21572424

Related information

Inhibitor AA39-2    AA74-1    ML225

Citations formats

Adibekian A, Martin BR, Wang C, Hsu KL, Bachovchin DA, Niessen S, Hoover H, Cravatt BF (2011)
Click-generated triazole ureas as ultrapotent in vivo-active serine hydrolase inhibitors
Nat Chemical Biology 7 :469

Adibekian A, Martin BR, Wang C, Hsu KL, Bachovchin DA, Niessen S, Hoover H, Cravatt BF (2011)
Nat Chemical Biology 7 :469