Publication | Open Access
Design, Synthesis, and Structure–Activity Relationship of a Novel Series of GluN2C-Selective Potentiators
45
Citations
19
References
2014
Year
Structure–activity RelationshipSynaptic TransmissionChemistryPharmaceutical ChemistryMolecular PharmacologyNeurochemistryGlun2a-d SubunitsNovel SeriesMechanism Of ActionNeuropharmacologyPharmacologyFunctional SelectivityNmda ReceptorsActive AnaloguesNeuroscienceMolecular NeurobiologyMedicineGlun2c-selective PotentiatorsDrug Discovery
NMDA receptors are tetrameric complexes composed of GluN1 and GluN2A-D subunits that mediate a slow Ca(2+)-permeable component of excitatory synaptic transmission. NMDA receptors have been implicated in a wide range of neurological diseases and thus represent an important therapeutic target. We herein describe a novel series of pyrrolidinones that selectively potentiate only NMDA receptors that contain the GluN2C subunit. The most active analogues tested were over 100-fold selective for recombinant GluN2C-containing receptors over GluN2A/B/D-containing NMDA receptors as well as AMPA and kainate receptors. This series represents the first class of allosteric potentiators that are selective for diheteromeric GluN2C-containing NMDA receptors.
| Year | Citations | |
|---|---|---|
Page 1
Page 1