|
|
||||||||
Department of Physiology, Northwestern University Feinberg School of Medicine, Chicago, Illinois
Submitted 9 March 2008; accepted in final form 8 August 2008
Experience-dependent modification in the electrical properties of central neurons is a form of intrinsic plasticity that occurs during development and has been observed following behavioral learning. We report a novel form of intrinsic plasticity in hippocampal CA1 pyramidal neurons mediated by the KV7/KCNQ and CaV1/L-type Ca2+ channels. Enhancing Ca2+ influx with a conditioning spike train (30 Hz, 3 s) potentiated the KV7/KCNQ channel function and led to a long-lasting, activity-dependent increase in spike frequency adaptation—a gradual reduction in the firing frequency in response to sustained excitation. These effects were abolished by specific blockers for CaV1/L-type Ca2+ channels, KV7/KCNQ channels, and protein kinase A (PKA). Considering the widespread expression of these two channel types, the influence of Ca2+ influx and subsequent activation of PKA on KV7/KCNQ channels may represent a generalized principle in fine tuning the output of central neurons that promotes stability in firing—an example of homeostatic regulation of intrinsic membrane excitability.
This article has been cited by other articles:
![]() |
Q.-H. Chen and G. M. Toney Excitability of paraventricular nucleus neurones that project to the rostral ventrolateral medulla is regulated by small-conductance Ca2+-activated K+ channels J. Physiol., September 1, 2009; 587(17): 4235 - 4247. [Abstract] [Full Text] [PDF] |
||||
![]() |
S. Schorge and M. C. Walker A self-activating intrinsic brake on bursting in CA3 neurons J. Physiol., March 15, 2009; 587(6): 1143 - 1144. [Full Text] [PDF] |
||||
![]() |
J. T. Brown and A. D. Randall Activity-dependent depression of the spike after-depolarization generates long-lasting intrinsic plasticity in hippocampal CA3 pyramidal neurons J. Physiol., March 15, 2009; 587(6): 1265 - 1281. [Abstract] [Full Text] [PDF] |
||||
![]() |
S. A. Prescott, S. Ratte, Y. De Koninck, and T. J. Sejnowski Pyramidal Neurons Switch From Integrators In Vitro to Resonators Under In Vivo-Like Conditions J Neurophysiol, December 1, 2008; 100(6): 3030 - 3042. [Abstract] [Full Text] [PDF] |
||||
| HOME | HELP | FEEDBACK | SUBSCRIPTIONS | ARCHIVE | SEARCH | TABLE OF CONTENTS |
| Visit Other APS Journals Online |