Electrophysiological Development of Central Neurons in theDrosophilaEmbryo
- 15 June 1998
- journal article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 18 (12) , 4673-4683
- https://doi.org/10.1523/jneurosci.18-12-04673.1998
Abstract
In this study, we describe the development of electrical properties of Drosophila embryonic central neurons in vivo. Using whole-cell voltage clamp, we describe the onset of expression of specific voltage- and ligand-gated ionic currents and the first appearance of endogenous and synaptic activity. The first currents occur during midembryogenesis [late stage 16, 13–14 hr after egg laying (AEL)] and consist of a delayed outward potassium current (IK) and an acetylcholine-gated inward cation current (IACh). As development proceeds, other voltage-activated currents arise sequentially. An inward calcium current (ICa) is first observed at 15 hr AEL, an inward sodium current (INa) at 16 hr AEL, and a rapidly inactivating outward potassium current (IA) at 17 hr AEL. The inward calcium current is composed of at least two individual and separable components that exhibit small temporal differences in their development. Endogenous activity is first apparent at 15 hr AEL and consists of small events (peak amplitude, 5 pA) that probably result from the random opening of relatively few numbers of ion channels. At 16 hr AEL, discrete (10–15 msec duration) currents that exhibit larger amplitude (25 pA maximum) and rapid activation but slower inactivation first appear. We identify these latter currents as EPSCs, an indication that functional synaptic transmission is occurring. In the neurons from which we record, action potentials first occur at 17 hr AEL. This study is the first to record from Drosophila embryonic central neurons in vivo and makes possible future work to define the factors that shape the electrical properties of neurons during development.Keywords
This publication has 30 references indexed in Scilit:
- The Drosophila islet Gene Governs Axon Pathfinding and Neurotransmitter IdentityNeuron, 1997
- Alterations in Synaptic Strength Preceding Axon WithdrawalScience, 1997
- The Molecular Biology of Axon GuidanceScience, 1996
- GFP in DrosophilaTrends in Genetics, 1995
- Activity-dependent development of the neuromuscular synapse during drosophila embryogenesisNeuron, 1993
- Synaptic structure and development: The neuromuscular junctionCell, 1993
- Functional Assay of a PutativeDrosophilaSodium Channel Gene in Homozygous Deficiency NeuronsJournal of Neurogenetics, 1992
- The drosophila shaker gene codes for a distinctive K+ current in a subset of neuronsNeuron, 1990
- Stimulation of Neuronal Acetylcholine Receptors Induces Rapid Gene TranscriptionScience, 1986
- Neuronal determination during embryonic development of the grasshopper nervous systemDevelopmental Biology, 1985