Publication:
β1- and β3- voltage-gated sodium channel subunits modulate cell surface expression and glycosylation of Nav1.7 in HEK293 cells

cris.virtual.author-orcid0000-0003-0465-5138
cris.virtualsource.author-orcid817d7b5b-3822-4233-8a24-fa8880195ac3
cris.virtualsource.author-orcid60b52c97-c0b0-433c-a24a-96efd85c55cb
cris.virtualsource.author-orcid805cf509-9153-4b30-80a3-2d1f3604c741
datacite.rightsopen.access
dc.contributor.authorLaedermann, Cédric
dc.contributor.authorSyam, Ninda Ratna Maharani
dc.contributor.authorPertin, Marie
dc.contributor.authorDecosterd, Isabelle
dc.contributor.authorAbriel, Hugues
dc.date.accessioned2024-10-14T10:31:24Z
dc.date.available2024-10-14T10:31:24Z
dc.date.issued2013
dc.description.abstractVoltage-gated sodium channels (Navs) are glycoproteins composed of a pore-forming α-subunit and associated β-subunits that regulate Nav α-subunit plasma membrane density and biophysical properties. Glycosylation of the Nav α-subunit also directly affects Navs gating. β-subunits and glycosylation thus comodulate Nav α-subunit gating. We hypothesized that β-subunits could directly influence α-subunit glycosylation. Whole-cell patch clamp of HEK293 cells revealed that both β1- and β3-subunits coexpression shifted V ½ of steady-state activation and inactivation and increased Nav1.7-mediated I Na density. Biotinylation of cell surface proteins, combined with the use of deglycosydases, confirmed that Nav1.7 α-subunits exist in multiple glycosylated states. The α-subunit intracellular fraction was found in a core-glycosylated state, migrating at ~250 kDa. At the plasma membrane, in addition to the core-glycosylated form, a fully glycosylated form of Nav1.7 (~280 kDa) was observed. This higher band shifted to an intermediate band (~260 kDa) when β1-subunits were coexpressed, suggesting that the β1-subunit promotes an alternative glycosylated form of Nav1.7. Furthermore, the β1-subunit increased the expression of this alternative glycosylated form and the β3-subunit increased the expression of the core-glycosylated form of Nav1.7. This study describes a novel role for β1- and β3-subunits in the modulation of Nav1.7 α-subunit glycosylation and cell surface expression.
dc.description.sponsorship
dc.identifier.doi10.7892/boris.38729
dc.identifier.pmid24009557
dc.identifier.publisherDOI10.3389/fncel.2013.00137
dc.identifier.urihttps://boris-portal.unibe.ch/handle/20.500.12422/111840
dc.language.isoen
dc.publisherFrontiers Research Foundation
dc.publisher.placeLausanne
dc.relation.ispartofFrontiers in cellular neuroscience
dc.relation.issn1662-5102
dc.relation.organizationDCD5A442C30EE17DE0405C82790C4DE2
dc.relation.projectIn vivo relevance of the PY and PDZ-domain binding motifs of the cardiac sodium channel Nav1.5
dc.subjectNavs β-subunits biophysical properties glycosylation trafficking voltage-gated sodium channels (Navs)
dc.titleβ1- and β3- voltage-gated sodium channel subunits modulate cell surface expression and glycosylation of Nav1.7 in HEK293 cells
dc.typearticle
dspace.entity.typePublication
dspace.file.typetext
oaire.citation.startPage137
oaire.citation.volume7
oairecerif.author.affiliation
oairecerif.author.affiliation
oairecerif.author.affiliation
unibe.contributor.rolecreator
unibe.contributor.rolecreator
unibe.contributor.rolecreator
unibe.contributor.rolecreator
unibe.contributor.rolecreator
unibe.description.ispublishedpub
unibe.eprints.legacyId38729
unibe.journal.abbrevTitleFRONT CELL NEUROSCI
unibe.refereedtrue
unibe.relation.legacyprojectIn vivo relevance of the PY and PDZ-domain binding motifs of the cardiac sodium channel Nav1.5
unibe.subtype.articlejournal

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