Striatin knock out induces a gain of function of INa and impaired Ca2+ handling in mESC‐derived cardiomyocytes

Author:

Benzoni P.1ORCID,Arici M.2ORCID,Giannetti F.1,Cospito A.1,Prevostini R.1ORCID,Volani C.13,Fassina L.4,Rosato‐Siri M. D.3,Metallo A.2,Gennaccaro L.3ORCID,Suffredini S.3,Foco L.3,Mazzetti S.5,Calogero A.5,Cappelletti G.5,Leibbrandt A.6,Elling U.6,Broso F.3ORCID,Penninger J. M.67,Pramstaller P. P.3,Piubelli C.3,Bucchi A.1,Baruscotti M.1ORCID,Rossini A.3,Rocchetti M.2,Barbuti A.1ORCID

Affiliation:

1. Department of Biosciences, The Cell Physiology MiLab Università Degli Studi Di Milano Milan Italy

2. Department of Biotecnologie e Bioscienze Università degli Studi di Milano Bicocca Milano Milan Italy

3. Institute for Biomedicine, Eurac Research Bolzano Italy

4. Department of Electrical, Computer and Biomedical Engineering University of Pavia Pavia Italy

5. Department of Biosciences Università Degli Studi Di Milano Milan Italy

6. IMBA Institute of Molecular Biotechnology of the Austrian Academy of Sciences Vienna Austria

7. Department of Medical Genetics The University of British Columbia Vancouver British Columbia Canada

Abstract

AbstractAimStriatin (Strn) is a scaffold protein expressed in cardiomyocytes (CMs) and alteration of its expression are described in various cardiac diseases. However, the alteration underlying its pathogenicity have been poorly investigated.MethodsWe studied the role(s) of cardiac Strn gene (STRN) by comparing the functional properties of CMs, generated from Strn‐KO and isogenic WT mouse embryonic stem cell lines.ResultsThe spontaneous beating rate of Strn‐KO CMs was faster than WT cells, and this correlated with a larger fast INa conductance and no changes in If. Paced (2–8 Hz) Strn‐KO CMs showed prolonged action potential (AP) duration in comparison with WT CMs and this was not associated with changes in ICaL and IKr. Motion video tracking analysis highlighted an altered contraction in Strn‐KO CMs; this was associated with a global increase in intracellular Ca2+, caused by an enhanced late Na+ current density (INaL) and a reduced Na+/Ca2+ exchanger (NCX) activity and expression. Immunofluorescence analysis confirmed the higher Na+ channel expression and a more dynamic microtubule network in Strn‐KO CMs than in WT. Indeed, incubation of Strn‐KO CMs with the microtubule stabilizer taxol, induced a rescue (downregulation) of INa conductance toward WT levels.ConclusionLoss of STRN alters CMs electrical and contractile profiles and affects cell functionality by a disarrangement of Strn‐related multi‐protein complexes. This leads to impaired microtubules dynamics and Na+ channels trafficking to the plasma membrane, causing a global Na+ and Ca2+ enhancement.

Publisher

Wiley

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