Multicomponent mapping of boron chemotypes furnishes selective enzyme inhibitors.

Tan, Joanne; Cognetta Iii, Armand B; Diaz, Diego B; Lum, Kenneth M; Adachi, Shinya; Kundu, Soumajit; Cravatt, Benjamin F; Yudin, Andrei K · Nat Commun · 2017

basic_science · Level V

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Abstract

Heteroatom-rich organoboron compounds have attracted attention as modulators of enzyme function. Driven by the unmet need to develop chemoselective access to boron chemotypes, we report herein the synthesis of α- and β-aminocyano(MIDA)boronates from borylated carbonyl compounds. Activity-based protein profiling of the resulting β-aminoboronic acids furnishes selective and cell-active inhibitors of the (ox)lipid-metabolizing enzyme α/β-hydrolase domain 3 (ABHD3). The most potent compound displays nanomolar in vitro and in situ IC<sub>50</sub> values and fully inhibits ABHD3 activity in human cells with no detectable cross-reactivity against other serine hydrolases. These findings demonstrate that synthetic methods that enhance the heteroatom diversity of boron-containing molecules within a limited set of scaffolds accelerate the discovery of chemical probes of human enzymes.

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