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1.
ChemMedChem ; 9(10): 2254-9, 2014 Oct.
Article in English | MEDLINE | ID: mdl-25044437

ABSTRACT

The kainate receptors are the least studied subfamily of ionotropic glutamate receptors. These receptors are thought to have a neuromodulatory role and have been associated with a variety of disorders in the central nervous system. This makes kainate receptors interesting potential drug targets. Today, structures of the ligand binding domain (LBD) of the kainate receptor GluK3 are only known in complex with the endogenous agonist glutamate, the natural product kainate, and two synthetic agonists. Herein we report structures of GluK3 LBD in complex with two 2,4-syn-functionalized (S)-glutamate analogues to investigate their structural potential as chemical scaffolds. Similar binding affinities at GluK3 were determined for the 2-(methylcarbamoyl)ethyl analogue (Ki =4.0 µM) and the 2-(methoxycarbonyl)ethyl analogue (Ki =1.7 µM), in agreement with the similar positioning of the compounds within the binding pocket. As the binding affinity is similar to that of glutamate, this type of Cγ substituent could be used as a scaffold for introduction of even larger substituents reaching into unexplored binding site regions to achieve subtype selectivity.


Subject(s)
Glutamic Acid/metabolism , Receptors, Kainic Acid/metabolism , Binding Sites , Ligands , Models, Molecular , Protein Binding , GluK3 Kainate Receptor
2.
J Med Chem ; 56(4): 1614-28, 2013 Feb 28.
Article in English | MEDLINE | ID: mdl-23414088

ABSTRACT

In the mammalian central nervous system, (S)-glutamate (Glu) is released from the presynaptic neuron where it activates a plethora of pre- and postsynaptic Glu receptors. The fast acting ionotropic Glu receptors (iGluRs) are ligand gated ion channels and are believed to be involved in a vast number of neurological functions such as memory and learning, synaptic plasticity, and motor function. The synthesis of 14 enantiopure 2,4-syn-Glu analogues 2b-p is accessed by a short and efficient chemoenzymatic approach starting from readily available cyclohexanone 3. Pharmacological characterization at the iGluRs and EAAT1-3 subtypes revealed analogue 2i as a selective GluK1 ligand with low nanomolar affinity. Two X-ray crystal structures of the key analogue 2i in the ligand-binding domain (LBD) of GluA2 and GluK3 were determined. Partial domain closure was seen in the GluA2-LBD complex with 2i comparable to that induced by kainate. In contrast, full domain closure was observed in the GluK3-LBD complex with 2i, similar to that of GluK3-LBD with glutamate bound.


Subject(s)
Glutamate Plasma Membrane Transport Proteins/metabolism , Glutamates/chemical synthesis , Glutamic Acid/analogs & derivatives , Receptors, Ionotropic Glutamate/metabolism , Animals , Aspartate Aminotransferases/chemistry , Brain/metabolism , Catalysis , Crystallography, X-Ray , Glutamates/chemistry , Glutamates/pharmacology , Glutamic Acid/chemical synthesis , Glutamic Acid/chemistry , Glutamic Acid/pharmacology , HEK293 Cells , Humans , In Vitro Techniques , Ketoglutaric Acids/chemical synthesis , Ketoglutaric Acids/chemistry , Ligands , Models, Molecular , Molecular Structure , Radioligand Assay , Rats , Rats, Sprague-Dawley , Receptors, AMPA/chemistry , Receptors, AMPA/metabolism , Receptors, Ionotropic Glutamate/chemistry , Receptors, Kainic Acid/chemistry , Receptors, Kainic Acid/metabolism , Receptors, N-Methyl-D-Aspartate/metabolism , Stereoisomerism , Structure-Activity Relationship , GluK3 Kainate Receptor
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