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Full and Partial Agonism of Ionotropic Glutamate Receptors Indicated by Molecular Dynamics Simulations
- Source :
- Journal of Chemical Information and Modeling. 51:1037-1047
- Publication Year :
- 2011
- Publisher :
- American Chemical Society (ACS), 2011.
-
Abstract
- Ionotropic glutamate receptors (iGluRs) are synaptic proteins that facilitate signal transmission in the central nervous system. Extracellular iGluR cleft closure is linked to receptor activation; however, the mechanism underlying partial agonism is not entirely understood. Full agonists close the bilobed ligand-binding domain (LBD), while antagonists prevent closure; the transmembrane ion channel either opens or stays closed, respectively. Although some bulky partial agonists produce intermediate iGluR-LBD closure, the available crystal structures also imply that the cleft can be shut with certain partial agonists. Recently, we have shown that the iGluR-LBD closure stage can be recreated by inserting a ligand into the closed cleft and simulating the ligand-receptor complex with molecular dynamics. Our simulations indicate that partial agonist binding does not necessarily prevent full receptor cleft closure; instead, it destabilizes cleft closure. Interdomain hydrogen bonds were studied thoroughly, and one hydrogen bond, in particular, was consistently disrupted by bound partial agonists. Accordingly, the simulation protocol presented here can be used to categorize compounds in silico as partial or full agonists for iGluRs.
- Subjects :
- Binding Sites
Protein Conformation
Stereochemistry
Chemistry
General Chemical Engineering
Glutamate receptor
Hydrogen Bonding
General Chemistry
Molecular Dynamics Simulation
Library and Information Sciences
Neurotransmission
Crystallography, X-Ray
Ligands
Receptors, Ionotropic Glutamate
Ligand (biochemistry)
Partial agonist
Transmembrane protein
Computer Science Applications
Biophysics
Receptor
Ion channel
Protein Binding
Ionotropic effect
Subjects
Details
- ISSN :
- 1549960X and 15499596
- Volume :
- 51
- Database :
- OpenAIRE
- Journal :
- Journal of Chemical Information and Modeling
- Accession number :
- edsair.doi.dedup.....86a1338c4d0db0979aa6bf7e75be1344