Functional characteristics of skate connexin35, a member of the γ subfamily of connexins expressed in the vertebrate retina
- 1 June 1999
- journal article
- research article
- Published by Wiley in European Journal of Neuroscience
- Vol. 11 (6) , 1883-1890
- https://doi.org/10.1046/j.1460-9568.1999.00607.x
Abstract
Retinal neurons are coupled by electrical synapses that have been studied extensively in situ and in isolated cell pairs. Although many unique gating properties have been identified, the connexin composition of retinal gap junctions is not well defined. We have functionally characterized connexin35 (Cx35), a recently cloned connexin belonging to the γ subgroup expressed in the skate retina, and compared its biophysical properties with those obtained from electrically coupled retinal cells. Injection of Cx35 RNA into pairs of Xenopus oocytes induced intercellular conductances that were voltage-gated at transjunctional potentials ≥ 60 mV, and that were also closed by intracellular acidification. In contrast, Cx35 was unable to functionally interact with rodent connexins from the α or β subfamilies. Voltage-activated hemichannel currents were also observed in single oocytes expressing Cx35, and superfusing these oocytes with medium containing 100 μm quinine resulted in a 1.8-fold increase in the magnitude of the outward currents, but did not change the threshold of voltage activation (membrane potential = +20 mV). Cx35 intercellular channels between paired oocytes were insensitive to quinine treatment. Both hemichannel activity and its modulation by quinine were seen previously in recordings from isolated skate horizontal cells. Voltage-activated currents of Cx46 hemichannels were also enhanced 1.6-fold following quinine treatment, whereas Cx43-injected oocytes showed no hemichannel activity in the presence, or absence, of quinine. Although the cellular localization of Cx35 is unknown, the functional characteristics of Cx35 in Xenopus oocytes are consistent with the hemichannel and intercellular channel properties of skate horizontal cells.Keywords
This publication has 52 references indexed in Scilit:
- The ion selectivity of a membrane conductance inactivated by extracellular calcium in Xenopus oocytesThe Journal of Physiology, 1998
- A Missense Mutation in the Human Connexin50 Gene (GJA8) Underlies Autosomal Dominant “Zonular Pulverulent” Cataract, on Chromosome 1qAmerican Journal of Human Genetics, 1998
- Gap junctions in the vertebrate retinaMicroscopy Research and Technique, 1995
- Biophysical properties of gap junction channels formed by mouse connexin40 in induced pairs of transfected human HeLa cellsBiophysical Journal, 1995
- A novel action of quinine and quinidine on the membrane conductance of neurons from the vertebrate retina.The Journal of general physiology, 1994
- Selective interactions among the multiple connexin proteins expressed in the vertebrate lens: the second extracellular domain is a determinant of compatibility between connexins.The Journal of cell biology, 1994
- Receptive field properties of rod-driven horizontal cells in the skate retina.The Journal of general physiology, 1992
- Formation of gap junctions by expression of connexins in Xenopus oocyte pairsCell, 1989
- Analysis of the rat liver gap junction protein : clarification of anomalies in its molecular sizeProceedings of the Royal Society of London. B. Biological Sciences, 1988
- Equilibrium properties of a voltage-dependent junctional conductance.The Journal of general physiology, 1981