Fast and Slow Voltage-Dependent Dynamics of Magnesium Block in the NMDA Receptor: The Asymmetric Trapping Block Model
Open Access
- 7 July 2004
- journal article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 24 (27) , 6171-6180
- https://doi.org/10.1523/jneurosci.1380-04.2004
Abstract
The NMDA receptor (NMDAR) produces a long-lasting component of the glutamatergic EPSC in mammalian central neurons. The current through NMDARs is voltage dependent as a result of block by extracellular magnesium, which has recently been shown to give rise to a complex time dependence, with fast and slow components of responses to changes in membrane potential. Here, we studied the dynamics of block and unblock by measuring voltage step responses in conjunction with fast perfusion of agonist in nucleated patches isolated from rat cortical pyramidal neurons. We found that slow unblock shows a progressive onset during synaptic-like responses to brief pulses of agonist. Repolarizing briefly from +40 to -70 mV revealed that slow unblock is reestablished with a time constant of ∼5 msec at room temperature. Also, the time course of deactivation, in response to a pulse of agonist, slows twofold over the potential range -30 to +40 mV. An asymmetric “trapping block” model in which the voltage-independent closing rate constant of the blocked channel is approximately three times that of the unblocked channel accounts quantitatively for all of these phenomena and for responses to action potential waveform clamp. This model allows much more accurate prediction of NMDAR current in physiological conditions of magnesium concentration and changing membrane potential than previously possible. It suggests a positive allosteric link between occupation of the NMDAR pore by magnesium and closure of the permeation gate.Keywords
This publication has 42 references indexed in Scilit:
- Modal gating of NMDA receptors and the shape of their synaptic responseNature Neuroscience, 2003
- Activation of NR1/NR2B NMDA receptorsNature Neuroscience, 2003
- Dendritic mechanisms underlying the coupling of the dendritic with the axonal action potential initiation zone of adult rat layer 5 pyramidal neuronsThe Journal of Physiology, 2001
- Synaptic Modification by Correlated Activity: Hebb's Postulate RevisitedAnnual Review of Neuroscience, 2001
- The trapping block of NMDA receptor channels in acutely isolated rat hippocampal neuronesThe Journal of Physiology, 2000
- Increased contribution of NR2A subunit to synaptic NMDA receptors in developing rat cortical neuronsThe Journal of Physiology, 1998
- Regulation of Synaptic Efficacy by Coincidence of Postsynaptic APs and EPSPsScience, 1997
- Developmental and regional expression in the rat brain and functional properties of four NMDA receptorsPublished by Elsevier ,1994
- Mechanisms generating the time course of dual component excitatory synaptic currents recorded in hippocampal slicesNeuron, 1990
- Channel kinetics determine the time course of NMDA receptor-mediated synaptic currentsNature, 1990