Publication:
Deletion of Trpm4 Alters the Function of the Nav1.5 Channel in Murine Cardiac Myocytes.

cris.virtual.author-orcid0000-0003-0465-5138
cris.virtualsource.author-orcid46eeffb4-c709-4ad0-a8bd-3372a1f8d855
cris.virtualsource.author-orcid4aa117a8-742c-4f4b-82f3-4f6b1b78c407
cris.virtualsource.author-orcidc09c4263-5ab6-4886-8689-08b736002afa
cris.virtualsource.author-orcid5ffac2a1-9e98-4ea9-8006-5ac95900409a
cris.virtualsource.author-orcidab0421a7-802d-4df5-adc1-edf735f69143
cris.virtualsource.author-orcid805cf509-9153-4b30-80a3-2d1f3604c741
datacite.rightsopen.access
dc.contributor.authorOzhathil, Lijo Cherian
dc.contributor.authorRougier, Jean-Sébastien
dc.contributor.authorArullampalam, Prakash
dc.contributor.authorEssers, Maria Cristina
dc.contributor.authorRoss, Daniela
dc.contributor.authorAbriel, Hugues
dc.date.accessioned2024-10-05T12:14:04Z
dc.date.available2024-10-05T12:14:04Z
dc.date.issued2021-03-26
dc.description.abstractTransient receptor potential melastatin member 4 (TRPM4) encodes a Ca2+-activated, non-selective cation channel that is functionally expressed in several tissues, including the heart. Pathogenic mutants in TRPM4 have been reported in patients with inherited cardiac diseases, including conduction blockage and Brugada syndrome. Heterologous expression of mutant channels in cell lines indicates that these mutations can lead to an increase or decrease in TRPM4 expression and function at the cell surface. While the expression and clinical variant studies further stress the importance of TRPM4 in cardiac function, the cardiac electrophysiological phenotypes in Trpm4 knockdown mouse models remain incompletely characterized. To study the functional consequences of Trpm4 deletion on cardiac electrical activity in mice, we performed perforated-patch clamp and immunoblotting studies on isolated atrial and ventricular cardiac myocytes and surfaces, as well as on pseudo- and intracardiac ECGs, either in vivo or in Langendorff-perfused explanted mouse hearts. We observed that TRPM4 is expressed in atrial and ventricular cardiac myocytes and that deletion of Trpm4 unexpectedly reduces the peak Na+ currents in myocytes. Hearts from Trpm4-/- mice presented increased sensitivity towards mexiletine, a Na+ channel blocker, and slower intraventricular conduction, consistent with the reduction of the peak Na+ current observed in the isolated cardiac myocytes. This study suggests that TRPM4 expression impacts the Na+ current in murine cardiac myocytes and points towards a novel function of TRPM4 regulating the Nav1.5 function in murine cardiac myocytes.
dc.description.numberOfPages19
dc.description.sponsorshipInstitut für Biochemie und Molekulare Medizin (IBMM)
dc.identifier.doi10.48350/155671
dc.identifier.pmid33810249
dc.identifier.publisherDOI10.3390/ijms22073401
dc.identifier.urihttps://boris-portal.unibe.ch/handle/20.500.12422/56688
dc.language.isoen
dc.publisherMDPI
dc.relation.ispartofInternational journal of molecular sciences
dc.relation.issn1422-0067
dc.relation.organization14645BFECAAA766CE053960C5C8289FA
dc.relation.organizationDCD5A442BCD9E17DE0405C82790C4DE2
dc.relation.schoolDCD5A442C27BE17DE0405C82790C4DE2
dc.subjectSCN5A TRPM4 cardiac conduction disorder channelosome intracardiac ECG mexiletine
dc.subject.ddc500 - Science::570 - Life sciences; biology
dc.subject.ddc600 - Technology::610 - Medicine & health
dc.titleDeletion of Trpm4 Alters the Function of the Nav1.5 Channel in Murine Cardiac Myocytes.
dc.typearticle
dspace.entity.typePublication
dspace.file.typetext
oaire.citation.issue7
oaire.citation.volume22
oairecerif.author.affiliationInstitut für Biochemie und Molekulare Medizin (IBMM)
oairecerif.author.affiliationInstitut für Biochemie und Molekulare Medizin (IBMM)
oairecerif.author.affiliationInstitut für Biochemie und Molekulare Medizin (IBMM)
oairecerif.author.affiliationInstitut für Biochemie und Molekulare Medizin (IBMM)
oairecerif.author.affiliationInstitut für Biochemie und Molekulare Medizin (IBMM)
oairecerif.author.affiliationInstitut für Biochemie und Molekulare Medizin (IBMM)
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unibe.date.licenseChanged2021-05-06 09:34:19
unibe.description.ispublishedpub
unibe.eprints.legacyId155671
unibe.refereedtrue
unibe.subtype.articlejournal

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