|
||
The Journal of General Physiology, Vol 94, 1085-1099, Copyright © 1989 by The Rockefeller University Press
ARTICLES |
TS McClintock and BW Ache
Whitney Laboratory, University of Florida, St. Augustine 32086.
The role of the soma of spiny lobster olfactory receptor cells in generating odor-evoked electrical signals was investigated by studying the ion channels and macroscopic currents of the soma. Four ionic currents; a tetrodotoxin-sensitive Na+ current, a Ca++ current, a Ca(++)-activated K+ current, and a delayed rectifier K+ current, were isolated by application of specific blocking agents. The Na+ and Ca++ currents began to activate at -40 to -30 mV, while the K+ currents began to activate at -30 to -20 mV. The size of the Na+ current was related to the presence of a remnant of a neurite, presumably an axon, and not to the size of the soma. No voltage-dependent inward currents were observed at potentials below those activating the Na+ current, suggesting that receptor potentials spread passively through the soma to generate action potentials in the axon of this cell. Steady-state inactivation of the Na+ current was half-maximal at -40 mV. Recovery from inactivation was a single exponential function that was half- maximal at 1.7 ms at room temperature. The K+ currents were much larger than the inward currents and probably underlie the outward rectification observed in this cell. The delayed rectifier K+ current was reduced by GTP-gamma-S and AIF-4, agents which activate GTP-binding proteins. The channels described were a 215-pS Ca(++)-activated K+ channel, a 9.7-pS delayed rectifier K+ channel, and a 35-pS voltage- independent Cl- channel. The Cl- channel provides a constant leak conductance that may be important in stabilizing the membrane potential of the cell.
This article has been cited by other articles:
![]() |
J. Cebada and U. Garcia Histamine operates Cl -gated channels in crayfish neurosecretory cells J. Exp. Biol., November 15, 2007; 210(22): 3962 - 3969. [Abstract] [Full Text] [PDF] |
||||
![]() |
R. Stepanyan, K. Day, J. Urban, D. L. Hardin, R. S. Shetty, C. D. Derby, B. W. Ache, and T. S. McClintock Gene expression and specificity in the mature zone of the lobster olfactory organ. Physiol Genomics, April 13, 2006; 25(2): 224 - 233. [Abstract] [Full Text] [PDF] |
||||
![]() |
R. E. Doolin and B. W. Ache Specificity of Odorant-evoked Inhibition in Lobster Olfactory Receptor Neurons Chem Senses, February 1, 2005; 30(2): 105 - 110. [Abstract] [Full Text] [PDF] |
||||
![]() |
R. E. Doolin and B. W. Ache Cyclic Nucleotide Signaling Mediates an Odorant-suppressible Chloride Conductance in Lobster Olfactory Receptor Neurons Chem Senses, February 1, 2005; 30(2): 127 - 135. [Abstract] [Full Text] [PDF] |
||||
![]() |
R. Stepanyan, B. Hollins, S. E. Brock, and T. S. McClintock Primary Culture of Lobster (Homarus americanus) Olfactory Sensory Neurons Chem Senses, March 1, 2004; 29(3): 179 - 187. [Abstract] [Full Text] [PDF] |
||||
![]() |
P. Lucas and T. Shimahara Voltage- and Calcium-activated Currents in Cultured Olfactory Receptor Neurons of Male Mamestra brassicae (Lepidoptera) Chem Senses, September 1, 2002; 27(7): 599 - 610. [Abstract] [Full Text] [PDF] |
||||
![]() |
F. S. Corotto and W. C. Michel Mechanisms of Afterhyperpolarization in Lobster Olfactory Receptor Neurons J Neurophysiol, September 1, 1998; 80(3): 1268 - 1276. [Abstract] [Full Text] [PDF] |
||||
|
|