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Molecular Basis of Kainate Receptor Modulation by Sodium

Journal Article · · Neuron
Membrane proteins function in a polarized ionic environment with sodium-rich extracellular and potassium-rich intracellular solutions. Glutamate receptors that mediate excitatory synaptic transmission in the brain show unusual sensitivity to external ions, resulting in an apparent requirement for sodium in order for glutamate to activate kainate receptors. Here, we solve the structure of the Na{sup +}-binding sites and determine the mechanism by which allosteric anions and cations regulate ligand-binding dimer stability, and hence the rate of desensitization and receptor availability for gating by glutamate. We establish a stoichiometry for binding of 2 Na{sup +} to 1 Cl{sup -} and show that allosteric anions and cations bind at physically discrete sites with strong electric fields, that the binding sites are not saturated in CSF, and that the requirement of kainate receptors for Na{sup +} occurs simply because other cations bind with lower affinity and have lower efficacy compared to Na{sup +}.
Research Organization:
Advanced Photon Source (APS), Argonne National Laboratory (ANL), Argonne, IL (US)
Sponsoring Organization:
USDOE
OSTI ID:
1006675
Journal Information:
Neuron, Journal Name: Neuron Journal Issue: 06, 2008 Vol. 58; ISSN 0896-6273; ISSN NERNET
Country of Publication:
United States
Language:
ENGLISH

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