Coordinated Gating of TRP-Dependent Channels in Rhabdomeral Membranes from Drosophila Retinas

Using a newly developed dissociation procedure, we isolated the specialized rhabdomeral membranes from Drosophila retinal photoreceptors. From these membranes, we have recorded spontaneous active currents in excised patch, voltage-clamp recordings. We observed rapid opening events that closely resem...

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Veröffentlicht in:The Journal of neuroscience 2000-10, Vol.20 (19), p.7193-7198
Hauptverfasser: Haab, Joan E, Vergara, Cecilia, Bacigalupo, Juan, O'Day, Peter M
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Sprache:eng
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Zusammenfassung:Using a newly developed dissociation procedure, we isolated the specialized rhabdomeral membranes from Drosophila retinal photoreceptors. From these membranes, we have recorded spontaneous active currents in excised patch, voltage-clamp recordings. We observed rapid opening events that closely resembled those ascribed to one class of light-activated channels, TRP. All activity exhibited Ba(2+) permeability, little voltage dependence, and sensitivity to La(3+) block. Mutational analysis indicated that the spontaneous activity present in these membranes was TRP-dependent. Excised patches from wild-type rhabdomeral membranes exhibited a wide range of conductance amplitudes. In addition, large conductance events exhibited many conductance levels in the open state. Block of activity by La(3+) both developed and recovered in a stepwise manner. Our results indicate that TRP-dependent channels have a small unitary conductance and that many channels can be gated coordinately.
ISSN:0270-6474
1529-2401
DOI:10.1523/jneurosci.20-19-07193.2000