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Incorporation of the δ-subunit into the epithelial sodium channel (ENaC) generates protease-resistant ENaCs in Xenopus laevis.
Wichmann, Lukas; Vowinkel, Kirsty Sophia; Perniss, Alexander; Manzini, Ivan; Althaus, Mike.
Afiliação
  • Wichmann L; From the School of Natural and Environmental Sciences, Newcastle University, Ridley Building 2, Newcastle upon Tyne NE1 7RU, United Kingdom and.
  • Vowinkel KS; the Institute of Animal Physiology, Department of Animal Physiology and Molecular Biomedicine, Justus-Liebig University, 35392 Giessen, Germany.
  • Perniss A; the Institute of Animal Physiology, Department of Animal Physiology and Molecular Biomedicine, Justus-Liebig University, 35392 Giessen, Germany.
  • Manzini I; the Institute of Animal Physiology, Department of Animal Physiology and Molecular Biomedicine, Justus-Liebig University, 35392 Giessen, Germany.
  • Althaus M; the Institute of Animal Physiology, Department of Animal Physiology and Molecular Biomedicine, Justus-Liebig University, 35392 Giessen, Germany.
J Biol Chem ; 293(18): 6647-6658, 2018 05 04.
Article em En | MEDLINE | ID: mdl-29576549
The epithelial sodium channel (ENaC) is a critical regulator of vertebrate electrolyte homeostasis. ENaC is the only constitutively open ion channel in the degenerin/ENaC protein family, and its expression, membrane abundance, and open probability therefore are tightly controlled. The canonical ENaC is composed of three subunits (α, ß, and γ), but a fourth δ-subunit may replace α and form atypical δßγ-ENaCs. Using Xenopus laevis as a model, here we found that mRNAs of the α- and δ-subunits are differentially expressed in different tissues and that δ-ENaC predominantly is present in the urogenital tract. Using whole-cell and single-channel electrophysiology of oocytes expressing Xenopus αßγ- or δßγ-ENaC, we demonstrate that the presence of the δ-subunit enhances the amount of current generated by ENaC due to an increased open probability, but also changes current into a transient form. Activity of canonical ENaCs is critically dependent on proteolytic processing of the α- and γ-subunits, and immunoblotting with epitope-tagged ENaC subunits indicated that, unlike α-ENaC, the δ-subunit does not undergo proteolytic maturation by the endogenous protease furin. Furthermore, currents generated by δßγ-ENaC were insensitive to activation by extracellular chymotrypsin, and presence of the δ-subunit prevented cleavage of γ-ENaC at the cell surface. Our findings suggest that subunit composition constitutes an additional level of ENaC regulation, and we propose that the Xenopus δ-ENaC subunit represents a functional example that demonstrates the importance of proteolytic maturation during ENaC evolution.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Peptídeo Hidrolases / Canais Epiteliais de Sódio Tipo de estudo: Prognostic_studies Limite: Animals Idioma: En Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Peptídeo Hidrolases / Canais Epiteliais de Sódio Tipo de estudo: Prognostic_studies Limite: Animals Idioma: En Ano de publicação: 2018 Tipo de documento: Article