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PMID: 1976250 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Dynorphin A and cAMP-dependent protein kinase independently regulate neuronal calcium currents.

Gross RA, Moises HC, Uhler MD, Macdonald RL

Abstract

The kappa-selective opioid peptide dynorphin A (DYN) inhibits neuronal adenylate cyclase activity and reduces neuronal voltage-dependent calcium currents. It is not yet known, however, whether the regulation of calcium channel activity is dependent on or independent of the adenylate cyclase/cAMP system. We used the whole-cell variation of the patch clamp technique to show that DYN reversibly reduced, in a naloxone-sensitive manner, calcium currents in acutely dissociated rat nodose ganglion neurons. DYN slowed the rate of current activation and had a greater effect on currents evoked from relatively negative holding potentials. These actions were mimicked by guanosine 5'-[gamma-thio]triphosphate, which activates GTP-binding proteins (G proteins), and were blocked by pretreatment with pertussis toxin, which inactivates Gi- and Go-type G proteins. In contrast, calcium currents recorded in the presence of the catalytic subunit of the cAMP-dependent protein kinase (AK-C), included in the recording pipette, increased in magnitude throughout the recording. DYN was applied to neurons before and after the effect of AK-C became apparent; the reduction of calcium currents by DYN was greater in the presence of AK-C than in its absence. We conclude that the acute reduction of neuronal calcium currents by DYN occurred by means of activation of pertussis toxin-sensitive Gi- or Go-type G proteins. The persistence of the action of DYN in the presence of AK-C indicates, however, that this effect was independent of a reduction of the activity of the adenylate cyclase/cAMP system and suggests in addition that phosphorylated channels may be preferentially inhibited by DYN.

MeSH Terms
Adenylate Cyclase Toxin Animals Calcium Channels/drug effects,physiology Cells, Cultured Dynorphins/pharmacology Electrophysiology/methods Guanosine 5'-O-(3-Thiotriphosphate) Guanosine Triphosphate/analogs & derivatives,pharmacology Homeostasis Kinetics Macromolecular Substances Membrane Potentials/drug effects Models, Biological Naloxone/pharmacology Neurons/drug effects,physiology Nodose Ganglion/physiology Pertussis Toxin Protein Kinases/physiology Rats Thionucleotides/pharmacology Vagus Nerve/physiology Virulence Factors, Bordetella/pharmacology
Chemicals
Adenylate Cyclase Toxin Calcium Channels Macromolecular Substances Thionucleotides Virulence Factors, Bordetella Naloxone Guanosine 5'-O-(3-Thiotriphosphate) Dynorphins Guanosine Triphosphate Pertussis Toxin Protein Kinases
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Gross R A
Department of Neurology, University of Michigan Medical Center, Ann Arbor 48104.
Moises H C
Uhler M D
Macdonald R L
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Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
ISSN
0027-8424
Published
1990-09-00
Pages
7025-9
Language
English
Region
United States
NLM ID
7505876
PMCID
PMC54675
Subset
IM
Grants
PHS HHS · 03365 · United States
NINDS NIH HHS · NS01019 · United States
NINDS NIH HHS · NS19613 · United States
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