HERG‐ and IRK‐like Inward Rectifier Currents are Sequentially Expressed During Neuronal Development of Neural Crest Cells and their Derivatives
- 1 December 1997
- journal article
- Published by Wiley in European Journal of Neuroscience
- Vol. 9 (12) , 2596-2604
- https://doi.org/10.1111/j.1460-9568.1997.tb01689.x
Abstract
Quail neural crest cells were cultured in a differentiative medium to study the inward K+ channel profile in neuronal precursors at various stages of maturation. Between 12 and 24 h of culture, neural crest‐derived neurons displayed, in addition to the previously described outward depolarization‐activated K+ currents, an inward current enhanced in high K+ medium. A biophysical and pharmacological analysis led us to conclude that this inward K+ current is identical to that previously demonstrated in mouse and human neuroblastoma cell lines (IIR). This current (quail IIR or qllR), which is active at membrane potentials positive to ‐35 mV, was blocked by Cs+ and by class Ill antiarrhythmic drugs, thus resembling the K+ current encoded by the human ether‐a‐go‐go‐related gene (HERG). At later stages of incubation (>48 h), neural crest‐derived neurons underwent morphological and biochemical differentiation and expressed fast Na+ currents. At this stage the cells lost qllR, displaying instead a classical inward rectifier K+ (IRK) current (quail IIRK= qIIRK). This substitution was reflected in the resting potential (VREST), which became hyperpolarized by >20 mV compared with the 24 h cells. Neurons were also harvested from peripheral ganglia and other derivatives originating from the migration of neural crest cells, viz. ciliary ganglia, dorsal root ganglia, adrenal medulla and sympathetic chain ganglia. After brief culture following harvesting from young embryos, ganglionic neurons always expressed qilR. On the other hand, when ganglia were explanted from older embryos (7–12 days), briefly cultured neurons displayed the IRK‐like current. Again, in all the above derivatives the qllR substitution by qllRK was accompanied by a 20 mV hyperpolarization of VREST. Together, these data indicate that the VREST of normal neuronal precursors is sequentially regulated by HERG‐ and IRK‐like currents, suggesting that HERG‐like channels mark an immature and transient stage of neuronal differentiation, probably the same stage frozen in neuroblastomas by neoplastic transformation.Keywords
This publication has 42 references indexed in Scilit:
- Soluble or Bound Laminin Elicit in Human Neuroblastoma Cells Short- or Long-Term Potentiation of a K+Inwardly Rectifying Current: Relevance to NeuritogenesisCell Adhesion and Communication, 1996
- Spontaneous Ca2+ spikes and waves in embryonic neurons: signaling systems for differentiationTrends in Neurosciences, 1994
- Action potentials, calcium transients and the control of differentiation of excitable cellsCurrent Opinion in Neurobiology, 1994
- Development of ion channels in early embryosJournal of Neurobiology, 1991
- Differentiation of delayed rectifier potassium current in embryonic amphibian myocytesDevelopmental Biology, 1991
- Spontaneous calcium influx and its roles in differentiation of spinal neurons in cultureDevelopmental Biology, 1990
- Lineage-Specific Development of Calcium Currents During EmbryogenesisScience, 1988
- Cell lineages in peripheral nervous system ontogeny: Medium-induced modulation of neuronal phenotypic expression in neural crest cell culturesDevelopmental Biology, 1987
- Development of electrical membrane properties in cultured avian neural crestNature, 1983
- Outward Currents in Developing Drosophila Flight MuscleScience, 1981