Serotoninergic Modulation of Chloride Homeostasis during Maturation of the Locomotor Network in Zebrafish
Open Access
- 16 November 2005
- journal article
- research article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 25 (46) , 10607-10616
- https://doi.org/10.1523/jneurosci.2017-05.2005
Abstract
During development, neural networks progress through important functional changes such as the generation of spontaneous activity, the expression of a depolarizing chloride gradient, and the appearance of neuromodulation. Little is known about how these processes are integrated to yield mature behaviors. We showed previously that, during the maturation of the locomotor network of the zebrafish, endogenous serotonin (5HT) increased motor activity by reducing intervals of inactivity, without affecting the active swim periods that are the target of 5HT in other and more mature preparations. Because membrane properties were constant during the rest intervals, we examined here whether 5HT modulates chloride homeostasis. We compared the effects of blocking (inward) chloride cotransport with bumetanide to the effects of 5HT and its antagonists, both behaviorally by video imaging and cellularly by whole-cell and gramicidin-perforated patch recordings. Bumetanide mimicked the effects of 5HT antagonists, by prolonging rest intervals without affecting the properties of swim episodes (duration; frequency; extent of depolarization) either behaviorally or during fictive swimming. Furthermore, bumetanide and 5HT antagonists suppressed the amplitude of depolarizing responses evoked by ionophoresis of glycine onto spinal neurons in the presence of tetrodotoxin and transiently suppressed the amplitude of responses to glycine measured after fictive swimming. The effects of bumetanide contrasted with and occluded the effects of 5HT. We suggest that, during development, endogenous 5HT modulates chloride homeostasis during the quiescent intervals and thereby offsets the long periods of quiescence commonly observed in developing networks to allow expression of sustained and behaviorally relevant activity.Keywords
This publication has 38 references indexed in Scilit:
- Modeling Spontaneous Activity in the Developing Spinal Cord Using Activity-Dependent Variations of Intracellular ChlorideJournal of Neuroscience, 2005
- Multiple Spontaneous Rhythmic Activity Patterns Generated by the Embryonic Mouse Spinal Cord Occur Within a Specific Developmental Time WindowJournal of Neurophysiology, 2004
- Serotonin patterns locomotor network activity in the developing zebrafish by modulating quiescent periodsJournal of Neurobiology, 2003
- Cation–chloride co-transporters in neuronal communication, development and traumaTrends in Neurosciences, 2003
- Ontogeny of Rhythmic Motor Patterns Generated in the Embryonic Rat Spinal CordJournal of Neurophysiology, 2003
- Cross Talk Between the GABAAReceptor and the Na-K-Cl Cotransporter Is Mediated by Intracellular Cl−Journal of Neurophysiology, 2003
- Reorganization of Locomotor Activity during Development in the Prenatal RataAnnals of the New York Academy of Sciences, 1998
- Glycinergic Inhibitory Synaptic Currents and Related Receptor Channels in the Zebrafish BrainEuropean Journal of Neuroscience, 1994
- GABA: an excitatory transmitter in early postnatal lifeTrends in Neurosciences, 1991
- Ontogeny of routine swimming activity and performance in zebra danios (Teleostei: Cyprinidae)Animal Behaviour, 1988