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Functional analysis in a model sea anemone reveals phylogenetic complexity and a role in cnidocyte discharge of DEG/ENaC ion channels

View ORCID ProfileJose Maria Aguilar-Camacho, Katharina Foreman, Reuven Aharoni, View ORCID ProfileStefan Gründer, View ORCID ProfileYehu Moran
doi: https://doi.org/10.1101/2022.05.24.493282
Jose Maria Aguilar-Camacho
1Department of Ecology, Evolution and Behavior, Alexander Silberman Institute of Life Sciences, Faculty of Science, The Hebrew University of Jerusalem, Jerusalem, Israel
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  • ORCID record for Jose Maria Aguilar-Camacho
Katharina Foreman
2Institute of Physiology, RWTH Aachen University, Aachen, Germany
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Reuven Aharoni
1Department of Ecology, Evolution and Behavior, Alexander Silberman Institute of Life Sciences, Faculty of Science, The Hebrew University of Jerusalem, Jerusalem, Israel
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Stefan Gründer
2Institute of Physiology, RWTH Aachen University, Aachen, Germany
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  • For correspondence: [email protected] [email protected]
Yehu Moran
1Department of Ecology, Evolution and Behavior, Alexander Silberman Institute of Life Sciences, Faculty of Science, The Hebrew University of Jerusalem, Jerusalem, Israel
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  • For correspondence: [email protected] [email protected]
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Abstract

Ion channels of the DEG/ENaC family share a similar structure but serve strikingly diverse biological functions, such as Na+ reabsorption, mechanosensing, proton-sensing, chemosensing and cell-cell communication via neuropeptides. This functional diversity raises the question of the ancient function of DEG/ENaCs. Using an extensive phylogenetic analysis across many different animal groups, we found a surprising diversity of DEG/ENaCs already in Cnidaria (corals, sea anemones, hyrdoids and jellyfish). Using a combination of gene expression analysis, electrophysiological and functional studies combined with pharmacological inhibition as well as genetic knockout in the model cnidarian Nematostella vectensis, we reveal an unanticipated role for a proton-sensitive DEG/ENaC in discharge of N. vectensis cnidocytes, the stinging cells typifying all cnidarians. Our study supports the view that DEG/ENaCs are versatile channels that have been co-opted for diverse functions since their early occurrence in animals and that respond to simple and ancient stimuli, such as omnipresent protons.

Teaser The analysis of an ion channel class in a sea anemone reveals its role in acidity-induced discharge of stinging cells.

Competing Interest Statement

The authors have declared no competing interest.

Copyright 
The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY 4.0 International license.
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Posted May 25, 2022.
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Functional analysis in a model sea anemone reveals phylogenetic complexity and a role in cnidocyte discharge of DEG/ENaC ion channels
Jose Maria Aguilar-Camacho, Katharina Foreman, Reuven Aharoni, Stefan Gründer, Yehu Moran
bioRxiv 2022.05.24.493282; doi: https://doi.org/10.1101/2022.05.24.493282
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Functional analysis in a model sea anemone reveals phylogenetic complexity and a role in cnidocyte discharge of DEG/ENaC ion channels
Jose Maria Aguilar-Camacho, Katharina Foreman, Reuven Aharoni, Stefan Gründer, Yehu Moran
bioRxiv 2022.05.24.493282; doi: https://doi.org/10.1101/2022.05.24.493282

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