Structure-Based Design of Ultrapotent Tricyclic Ligands for FK506-Binding Proteins.
Patryk KrajczyChristian MeynersMaximilian L RepityFelix HauschPublished in: Chemistry (Weinheim an der Bergstrasse, Germany) (2024)
Access to small, rigid, and sp 3 -rich molecules is a major limitation in the drug discovery for challenging protein targets. FK506-binding proteins hold high potential as drug targets or enablers of molecular glues but are fastidious in the chemotypes accepted as ligands. We here report an enantioselective synthesis of a highly rigidified pipecolate-mimicking tricyclic scaffold that precisely positions functional groups for interacting with FKBPs. This was enabled by a 14-step gram-scale synthesis featuring anodic oxidation, stereospecific vinylation, and N-acyl iminium cyclization. Structure-based optimization resulted in the discovery of FKBP inhibitors with picomolar biochemical and subnanomolar cellular activity that represent the most potent FKBP ligands known to date.