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The role of acid-sensing ion channels in epithelial Na+ uptake in adult zebrafish (Danio rerio)
journal contribution
posted on 2015-01-01, 00:00 authored by A K Dymowska, D Boyle, Aaron SchultzAaron Schultz, G G GossAcid-sensing ion channels (ASICs) are epithelial Na(+) channels gated by external H(+). Recently, it has been demonstrated that ASICs play a role in Na(+) uptake in freshwater rainbow trout. Here, we investigate the potential involvement of ASICs in Na(+) transport in another freshwater fish species, the zebrafish (Danio rerio). Using molecular and histological techniques we found that asic genes and the ASIC4.2 protein are expressed in the gill of adult zebrafish. Immunohistochemistry revealed that mitochondrion-rich cells positive for ASIC4.2 do not co-localize with Na(+)/K(+)-ATPase-rich cells, but co-localize with cells expressing vacuolar-type H(+)-ATPase. Furthermore, pharmacological inhibitors of ASIC and Na(+)/H(+)-exchanger significantly reduced uptake of Na(+) in adult zebrafish exposed to low-Na(+) media, but did not cause the same response in individuals exposed to ultra-low-Na(+) water. Our results suggest that in adult zebrafish ASICs play a role in branchial Na(+) uptake in media with low Na(+) concentrations and that mechanisms used for Na(+) uptake by zebrafish may depend on the Na(+) concentration in the acclimation medium.
History
Journal
Journal of experimental biologyVolume
218Issue
8Pagination
1244 - 1251Publisher
Company of biologistsLocation
Cambridge, Eng.Publisher DOI
ISSN
0022-0949eISSN
1477-9145Language
engPublication classification
C Journal article; C1.1 Refereed article in a scholarly journalCopyright notice
2015, The Company of Biologists LtdUsage metrics
Categories
No categories selectedKeywords
Acid-sensing ion channelsGillIonoregulationSodium uptakeZebrafishAcclimatizationAcid Sensing Ion ChannelsAmilorideAnimalsBiological Transport, ActiveEpitheliumGene Expression ProfilingGillsIndolesSodiumSodium-Hydrogen AntiporterSodium-Potassium-Exchanging ATPaseVacuolar Proton-Translocating ATPasesWaterZebrafish ProteinsScience & TechnologyLife Sciences & BiomedicineBiologyLife Sciences & Biomedicine - Other TopicsATPASE-RICH CELLSRAINBOW-TROUTH+-ATPASEAMMONIA EXCRETIONLARVAL ZEBRAFISHFISHEXPRESSIONDIFFERENTIATIONION-CHANNEL-1