Dendritic potassium channels in hippocampal pyramidal neurons
- 1 May 2000
- journal article
- review article
- Published by Wiley in The Journal of Physiology
- Vol. 525 (1) , 75-81
- https://doi.org/10.1111/j.1469-7793.2000.00075.x
Abstract
Potassium channels located in the dendrites of hippocampal CA1 pyramidal neurons control the shape and amplitude of back-propagating action potentials, the amplitude of excitatory postsynaptic potentials and dendritic excitability. Non-uniform gradients in the distribution of potassium channels in the dendrites make the dendritic electrical properties markedly different from those found in the soma. For example, the influence of a fast, calcium-dependent potassium current on action potential repolarization is progressively reduced in the first 150 μm of the apical dendrites, so that action potentials recorded farther than 200 μm from the soma have no fast after-hyperpolarization and are wider than those in the soma. The peak amplitude of back-propagating action potentials is also progressively reduced in the dendrites because of the increasing density of a transient potassium channel with distance from the soma. The activation of this channel can be reduced by the activity of a number of protein kinases as well as by prior depolarization. The depolarization from excitatory postsynaptic potentials (EPSPs) can inactivate these A-type K+ channels and thus lead to an increase in the amplitude of dendritic action potentials, provided the EPSP and the action potentials occur within the appropriate time window. This time window could be in the order of 15 ms and may play a role in long-term potentiation induced by pairing EPSPs and back-propagating action potentials.Keywords
This publication has 35 references indexed in Scilit:
- ERK Plays a Regulatory Role in Induction of LTP by Theta Frequency Stimulation and Its Modulation by β-Adrenergic ReceptorsNeuron, 1999
- Properties of Slow, Cumulative Sodium Channel Inactivation in Rat Hippocampal CA1 Pyramidal NeuronsBiophysical Journal, 1999
- ELECTRICAL AND CALCIUM SIGNALING IN DENDRITES OF HIPPOCAMPAL PYRAMIDAL NEURONSAnnual Review of Physiology, 1998
- Long‐term synaptic plasticity between pairs of individual CA3 pyramidal cells in rat hippocampal slice culturesThe Journal of Physiology, 1998
- Regulation of Synaptic Efficacy by Coincidence of Postsynaptic APs and EPSPsScience, 1997
- A Synaptically Controlled, Associative Signal for Hebbian Plasticity in Hippocampal NeuronsScience, 1997
- A biochemist's view of long-term potentiation.Learning & Memory, 1996
- Active Properties of Neuronal DendritesAnnual Review of Neuroscience, 1996
- Activity-Dependent Action Potential Invasion and Calcium Influx into Hippocampal CA1 DendritesScience, 1995
- Two-stage model of memory trace formation: A role for “noisy” brain statesNeuroscience, 1989