Thermodynamics and structural analysis of positive allosteric modulation of the ionotropic glutamate receptor GluA2.
Christian Krintel, Karla Frydenvang, Lars Olsen, Maria T Kristensen, Oriol de Barrios, Peter Naur, Pierre Francotte, Bernard Pirotte, Michael Gajhede, Jette S Kastrup
Index: Biochem. J. 441(1) , 173-8, (2012)
Full Text: HTML
Abstract
Positive allosteric modulators of the ionotropic glutamate receptor-2 (GluA2) are promising compounds for the treatment of cognitive disorders, e.g. Alzheimer's disease. These modulators bind within the dimer interface of the LBD (ligand-binding domain) and stabilize the agonist-bound conformation slowing receptor desensitization and/or deactivation. In the present study, we employ isothermal titration calorimetry to determine binding affinities and thermodynamic details of binding of modulators of GluA2. A mutant of the LBD of GluA2 (LBD-L483Y-N754S) that forms a stable dimer in solution was used. The potent GluA2 modulator BPAM-97 was used as a reference compound. Evidence that BPAM-97 binds in the same pocket as the well-known GluA2 modulator cyclothiazide was obtained from X-ray structures. The LBD-L483Y-N754S:BPAM-97 complex has a Kd of 5.6 μM (ΔH=-4.9 kcal/mol, -TΔS=-2.3 kcal/mol; where 1 kcal≈4.187 kJ). BPAM-97 was used in a displacement assay to determine a Kd of 0.46 mM (ΔH=-1.2 kcal/mol, -TΔS=-3.3 kcal/mol) for the LBD-L483Y-N754S:IDRA-21 complex. The major structural factors increasing the potency of BPAM-97 over IDRA-21 are the increased van der Waals contacts to, primarily, Met496 in GluA2 imposed by the ethyl substituent of BPAM-97. These results add important information on binding affinities and thermodynamic details, and provide a new tool in the development of drugs against cognitive disorders.
Related Compounds
Related Articles:
2015-11-01
[Neurochem. Int. 90 , 166-72, (2015)]
2015-03-01
[Exp. Eye Res. 132 , 136-50, (2015)]
2014-08-27
[J. Neurosci. 34(35) , 11673-83, (2014)]
Adenosine A3 receptor activation is neuroprotective against retinal neurodegeneration.
2015-11-01
[Exp. Eye Res. 140 , 65-74, (2015)]
2013-03-22
[J. Biol. Chem. 288(12) , 8647-57, (2013)]