Myopalladin knockout mice develop cardiac dilation and show a maladaptive response to mechanical pressure overload

Author:

Filomena Maria Carmela12,Yamamoto Daniel L1,Carullo Pierluigi12,Medvedev Roman23ORCID,Ghisleni Andrea4ORCID,Piroddi Nicoletta5,Scellini Beatrice5,Crispino Roberta6,D'Autilia Francesca2,Zhang Jianlin7,Felicetta Arianna28,Nemska Simona2,Serio Simone2,Tesi Chiara5,Catalucci Daniele2ORCID,Linke Wolfgang A9ORCID,Polishchuk Roman6ORCID,Poggesi Corrado5,Gautel Mathias4,Bang Marie-Louise12ORCID

Affiliation:

1. Institute of Genetic and Biomedical Research (IRGB) - National Research Council (CNR), Milan unit

2. IRCCS Humanitas Research Hospital

3. Department of Cardiac Surgery, University of Verona

4. Randall Centre for Cell and Molecular Biophysics, King's College London BHF Centre of Research Excellence

5. Department of Experimental and Clinical Medicine, University of Florence

6. Telethon Institute of Genetics and Medicine (TIGEM)

7. Department of Medicine, University of California, San Diego

8. Humanitas University

9. Institute of Physiology II, University of Muenster

Abstract

Myopalladin (MYPN) is a striated muscle-specific immunoglobulin domain-containing protein located in the sarcomeric Z-line and I-band. MYPN gene mutations are causative for dilated (DCM), hypertrophic, and restrictive cardiomyopathy. In a yeast two-hybrid screening, MYPN was found to bind to titin in the Z-line, which was confirmed by microscale thermophoresis. Cardiac analyses of MYPN knockout (MKO) mice showed the development of mild cardiac dilation and systolic dysfunction, associated with decreased myofibrillar isometric tension generation and increased resting tension at longer sarcomere lengths. MKO mice exhibited a normal hypertrophic response to transaortic constriction (TAC), but rapidly developed severe cardiac dilation and systolic dysfunction, associated with fibrosis, increased fetal gene expression, higher intercalated disc fold amplitude, decreased calsequestrin-2 protein levels, and increased desmoplakin and SORBS2 protein levels. Cardiomyocyte analyses showed delayed Ca2+ release and reuptake in unstressed MKO mice as well as reduced Ca2+ spark amplitude post-TAC, suggesting that altered Ca2+ handling may contribute to the development of DCM in MKO mice.

Funder

Fondazione Telethon

Ministero dell'Istruzione, dell'Università e della Ricerca

Ministero della Salute

Fondazione Cariplo

Agenzia Spaziale Italiana

European Commission

Wellcome Trust

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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