Biophysical characterization of the honeybee DSC1 orthologue reveals a novel voltage-dependent Ca2+ channel subfamily: CaV4

Author:

Gosselin-Badaroudine Pascal1,Moreau Adrien1,Simard Louis1,Cens Thierry2,Rousset Matthieu2,Collet Claude3,Charnet Pierre2,Chahine Mohamed14ORCID

Affiliation:

1. Centre de Recherche, Institut Universitaire en Santé Mentale de Québec, Quebec City, Quebec G1J 2G3, Canada

2. Institut des Biomolécules Max Mousseron, Centre National de la Recherche Scientifique UMR 5247, 1919 Montpellier, France

3. INRA UR 406, Abeilles et Environnement, Domaine Saint Paul - Site Agroparc, 84914 Avignon, France

4. Department of Medicine, Université Laval, Quebec City, Quebec G1K 7P4, Canada

Abstract

Bilaterian voltage-gated Na+ channels (NaV) evolved from voltage-gated Ca2+ channels (CaV). The Drosophila melanogaster Na+ channel 1 (DSC1), which features a D-E-E-A selectivity filter sequence that is intermediate between CaV and NaV channels, is evidence of this evolution. Phylogenetic analysis has classified DSC1 as a Ca2+-permeable Na+ channel belonging to the NaV2 family because of its sequence similarity with NaV channels. This is despite insect NaV2 channels (DSC1 and its orthologue in Blatella germanica, BSC1) being more permeable to Ca2+ than Na+. In this study, we report the cloning and molecular characterization of the honeybee (Apis mellifera) DSC1 orthologue. We reveal several sequence variations caused by alternative splicing, RNA editing, and genomic variations. Using the Xenopus oocyte heterologous expression system and the two-microelectrode voltage-clamp technique, we find that the channel exhibits slow activation and inactivation kinetics, insensitivity to tetrodotoxin, and block by Cd2+ and Zn2+. These characteristics are reminiscent of CaV channels. We also show a strong selectivity for Ca2+ and Ba2+ ions, marginal permeability to Li+, and impermeability to Mg2+ and Na+ ions. Based on current ion channel nomenclature, the D-E-E-A selectivity filter, and the properties we have uncovered, we propose that DSC1 homologues should be classified as CaV4 rather than NaV2. Indeed, channels that contain the D-E-E-A selectivity sequence are likely to feature the same properties as the honeybee’s channel, namely slow activation and inactivation kinetics and strong selectivity for Ca2+ ions.

Funder

Natural Sciences and Engineering Research Council of Canada

Natural Sciences and Engineering Research Council

Agence Nationale de la Recherche

Publisher

Rockefeller University Press

Subject

Physiology

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