Subunit‐specific mechanisms and proton sensitivity of NMDA receptor channel block
- 4 May 2007
- journal article
- research article
- Published by Wiley in The Journal of Physiology
- Vol. 581 (1) , 107-128
- https://doi.org/10.1113/jphysiol.2006.124958
Abstract
We have compared the potencies of structurally distinct channel blockers at recombinant NR1/NR2A, NR1/NR2B, NR1/NR2C and NR1/NR2D receptors. The IC50values varied with stereochemistry and subunit composition, suggesting that it may be possible to design subunit‐selective channel blockers. For dizocilpine (MK‐801), the differential potency of MK‐801 stereoisomers determined at recombinant NMDA receptors was confirmed at native receptorsin vitroandin vivo. Since the proton sensor is tightly linked both structurally and functionally to channel gating, we examined whether blocking molecules that interact in the channel pore with the gating machinery can differentially sense protonation of the receptor. Blockers capable of remaining trapped in the pore during agonist unbinding showed the strongest dependence on extracellular pH, appearing more potent at acidic pH values that promote channel closure. Determination of pKavalues for channel blockers suggests that the ionization of ketamine but not of other blockers can influence its pH‐dependent potency. Kinetic modelling and single channel studies suggest that the pH‐dependent block of NR1/NR2A by (−)MK‐801 but not (+)MK‐801 reflects an increase in the MK‐801 association rate even though protons reduce channel open probability and thus MK‐801 access to its binding site. Allosteric modulators that alter pH sensitivity alter the potency of MK‐801, supporting the interpretation that the pH sensitivity of MK‐801 binding reflects the changes at the proton sensor rather than a secondary effect of pH. These data suggest a tight coupling between the proton sensor and the ion channel gate as well as unique subunit‐specific mechanisms of channel block.Keywords
This publication has 104 references indexed in Scilit:
- NMDA Receptor NR2 Subunit Dependence of the Slow Component of Magnesium UnblockJournal of Neuroscience, 2006
- Differential binding properties of [3H]dextrorphan and [3H]MK-801 in heterologously expressed NMDA receptorsNeuropharmacology, 2005
- Glutamate Receptor GatingCritical Reviews™ in Neurobiology, 2004
- Determinants of trapping block of N‐methyl‐d‐aspartate receptor channelsJournal of Neurochemistry, 2003
- Allosteric interaction between the amino terminal domain and the ligand binding domain of NR2ANature Neuroscience, 2001
- Intracellular Mg2+ interacts with structural determinants of the narrow constriction contributed by the NR1‐subunit in the NMDA receptor channelThe Journal of Physiology, 1998
- Caffeine as a model drug of abuseTrends in Pharmacological Sciences, 1990
- Proton inhibition of N-methyl-D-aspartate receptors in cerebellar neuronsNature, 1990
- demonstration of the enhancement of MK-801 by L-glutamateLife Sciences, 1989
- Glutamate neurotoxicity in cortical cell culture is calcium dependentNeuroscience Letters, 1985