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Multicomponent mapping of boron chemotypes furnishes selective enzyme inhibitors. | LitMetric

Multicomponent mapping of boron chemotypes furnishes selective enzyme inhibitors.

Nat Commun

Davenport Research Laboratories, Department of Chemistry, University of Toronto, 80 St George Street, Toronto, ON, Canada, M5S 3H6.

Published: November 2017

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 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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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5701053PMC
http://dx.doi.org/10.1038/s41467-017-01319-4DOI Listing

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