Ablation of palladin in adult heart causes dilated cardiomyopathy associated with intercalated disc abnormalities

Author:

Mastrototaro Giuseppina12,Carullo Pierluigi23,Zhang Jianlin4,Scellini Beatrice5,Piroddi Nicoletta5,Nemska Simona2,Filomena Maria Carmela23,Serio Simone2ORCID,Otey Carol A6,Tesi Chiara5,Emrich Fabian7,Linke Wolfgang A8ORCID,Poggesi Corrado5,Boncompagni Simona9ORCID,Bang Marie-Louise23ORCID

Affiliation:

1. University of Milan-Bicocca

2. IRCCS Humanitas Research Hospital

3. Institute of Genetic and Biomedical Research, National Research Council, Milan unit

4. University of California, San Diego

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

6. Department of Cell Biology and Physiology, University of North Carolina at Chapel Hill

7. Department of Cardiac Surgery, Goethe University

8. Institute of Physiology II, University of Münster

9. Department of Neuroscience, Imaging and Clinical Sciences and Center for Advanced Studies and Technology, University G. d'Annunzio

Abstract

Palladin (PALLD) belongs to the PALLD/myopalladin (MYPN)/myotilin family of actin-associated immunoglobulin-containing proteins in the sarcomeric Z-line. PALLD is ubiquitously expressed in several isoforms, and its longest 200 kDa isoform, predominantly expressed in striated muscle, shows high structural homology to MYPN. MYPN gene mutations are associated with human cardiomyopathies, whereas the role of PALLD in the heart has remained unknown, partly due to embryonic lethality of PALLD knockout mice. In a yeast two-hybrid screening, CARP/Ankrd1 and FHOD1 were identified as novel interaction partners of PALLD’s N-terminal region. To study the role of PALLD in the heart, we generated conditional (cPKO) and inducible (cPKOi) cardiomyocyte-specific PALLD knockout mice. While cPKO mice exhibited no pathological phenotype, ablation of PALLD in adult cPKOi mice caused progressive cardiac dilation and systolic dysfunction, associated with reduced cardiomyocyte contractility, intercalated disc abnormalities, and fibrosis, demonstrating that PALLD is essential for normal cardiac function. Double cPKO and MYPN knockout (MKO) mice exhibited a similar phenotype as MKO mice, suggesting that MYPN does not compensate for the loss of PALLD in cPKO mice. Altered transcript levels of MYPN and PALLD isoforms were found in myocardial tissue from human dilated and ischemic cardiomyopathy patients, whereas their protein expression levels were unaltered.

Funder

Fondazione Telethon

Ministero dell'Università e della Ricerca

Horizon 2020 Framework Programme

Publisher

eLife Sciences Publications, Ltd

Subject

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

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