Ionic basis of different synaptic potentials mediated by an identified dopamine-containing neuron in Planorbis
- 15 January 1979
- journal article
- Published by The Royal Society in Proceedings of the Royal Society of London. B. Biological Sciences
- Vol. 203 (1153), 427-444
- https://doi.org/10.1098/rspb.1979.0007
Abstract
A specified dopamine neuron in Planorbis corneus produces dopamine-mediated e.p.s.ps, i.p.s.ps or biphasic, depolarizing-hyperpolarizing p.s.ps in different follower neurons. The excitatory potentials were of three types. Some follower neurons exhibited slow e.p.s.ps (ca. 1 s), and a long-lasting, slowly desensitizing, depolarizing response to iontophoresed dopamine. Others showed rapid (ca. 150 ms) e.p.s.ps, often of variable amplitude, and a rapid, quickly desensitizing, response to iontophoresed dopamine. The rapid e.p.s.ps were sometimes followed by the inhibitory response (biphasic potential). The e.p.s.ps were potentiated by hyperpolarization and reduced by depolarization, though they could not be inverted. The slow e.p.s.p. was shown to be associated with an increase in membrane conductance, but it has proved difficult to elucidate the ions involved. A third type of e.p.s.p. was produced by electrical transmission. The inhibitory potentials were generally reduced in amplitude by artificial hyperpolarization but could rarely be inverted. This is probably due in part to the presence of electrotonic coupling between these follower neurons. The i.p.s.ps were associated with an increase in conductance which appeared small when measured in the cell body. However, the i.p.s.ps produced considerable shunting of electrotonic transmission between coupled followers indicating a large increase in conductance at the synapse. I.p.s.ps were unaffected by Cl-free solution but they were greatly reduced, though rarely inverted, by increasing the external K concentration. They were blocked by intracellular tetraethylammonium, or cooling. The effects on corresponding responses to iontophoresed dopamine were in each case the same as on the i.p.s.ps. It is concluded that the i.p.s.ps mediated by the dopamine neuron are produced by an increase in permeability to K$^{+}$. On a few occasions i.p.s.ps mediated by the dopamine neuron were potentiated by hyperpolarization. This appeared to be caused by a sharp increase in membrane resistance with hyperpolarization of these particular neurons. However, mediation by a mechanism of conductance decrease could not be completely excluded.Keywords
This publication has 15 references indexed in Scilit:
- Two Functional Effects of Decreased Conductance EPSP's: Synaptic Augmentation and Increased Electrotonic CouplingScience, 1976
- Excitation-mediating and inhibition-mediating dopamine-receptors: A new concept towards a better understanding of electrophysiological, biochemical, pharmacological, functional and clinical dataPsychopharmacology, 1976
- Organisation of receptors for neurotransmitters on Aplysia neuronesNature, 1975
- Slow synaptic inhibition: evidence for synaptic inactivation of sodium conductance in sympathetic ganglion cellsBrain Research, 1973
- Inhibitory and excitatory effects of dopamine on Aplysia neuronesThe Journal of Physiology, 1972
- Ionic mechanism of a two‐component cholinergic inhibition in Aplysia neuronesThe Journal of Physiology, 1972
- Synaptic control of electronic coupling between neuronsBrain Research, 1972
- EXPERIMENTAL ALTERATION OF COUPLING RESISTANCE AT AN ELECTROTONIC SYNAPSEThe Journal of cell biology, 1971
- Ionic channels in nerve membranesProgress in Biophysics and Molecular Biology, 1970