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Protein Aggregation Is an Early Manifestation of Phospholamban p.(Arg14del)-Related Cardiomyopathy: Development of PLN-R14del-Related Cardiomyopathy

  • Tim R. Eijgenraam
  • , Cornelis J. Boogerd
  • , Nienke M. Stege
  • , Vivian Oliveira Nunes Teixeira
  • , Martin M. Dokter
  • , Lukas E. Schmidt
  • , Xiaoke Yin
  • , Konstantinos Theofilatos
  • , Manuel Mayr
  • , Peter Van Der Meer
  • , Eva Van Rooij
  • , Jolanda Van Der Velden
  • , Herman H.W. Silljé
  • , Rudolf A. De Boer*
  • *Corresponding author for this work
  • University Medical Centre Groningen
  • Utrecht University
  • King's College London
  • Amsterdam UMC

Research output: Contribution to journalArticleAcademicpeer-review

37 Citations (Scopus)

Abstract

Background: The p.(Arg14del) pathogenic variant (R14del) of the PLN (phospholamban) gene is a prevalent cause of cardiomyopathy with heart failure. The exact underlying pathophysiology is unknown, and a suitable therapy is unavailable. We aim to identify molecular perturbations underlying this cardiomyopathy in a clinically relevant PLN-R14del mouse model. Methods: We investigated the progression of cardiomyopathy in PLN-R14Δ/Δmice using echocardiography, ECG, and histological tissue analysis. RNA sequencing and mass spectrometry were performed on cardiac tissues at 3 (before the onset of disease), 5 (mild cardiomyopathy), and 8 (end stage) weeks of age. Data were compared with cardiac expression levels of mice that underwent myocardial ischemia-reperfusion or myocardial infarction surgery, in an effort to identify alterations that are specific to PLN-R14del-related cardiomyopathy. Results: At 3 weeks of age, PLN-R14Δ/Δmice had normal cardiac function, but from the age of 4 weeks, we observed increased myocardial fibrosis and impaired global longitudinal strain. From 5 weeks onward, ventricular dilatation, decreased contractility, and diminished ECG voltages were observed. PLN protein aggregation was present before onset of functional deficits. Transcriptomics and proteomics revealed differential regulation of processes involved in remodeling, inflammation, and metabolic dysfunction, in part, similar to ischemic heart disease. Altered protein homeostasis pathways were identified exclusively in PLN-R14Δ/Δmice, even before disease onset, in concert with aggregate formation. Conclusions: We mapped the development of PLN-R14del-related cardiomyopathy and identified alterations in proteostasis and PLN protein aggregation among the first manifestations of this disease, which could possibly be a novel target for therapy.

Original languageEnglish
Pages (from-to)E008532
JournalCirculation: Heart Failure
Volume14
Issue number11
DOIs
Publication statusPublished - 1 Nov 2021
Externally publishedYes

Bibliographical note

Funding Information:
This work was supported by the Netherlands Cardiovascular Research (CVON) and Dutch CardioVascular Alliance (DCVA) initiatives of the Dutch Heart Foundation (2020B005 DCVA-DOUBLE-DOSE; 2018-30 CVON-PREDICT2; 2017-21 CVON-SHE-PREDICTS-HF; 2017-11 CVON-RED-CVD; 2014-40 CVON-DOSIS), the Cure PhosphoLambaN-induced cardiomyopathy (Cure-PLaN) initiative of the Leducq Foundation, and the European Research Council Consolidator grant (ERC CoG) 818715 (SECRETE-HF). Generation of PLN-R14del mice was supported by the de Boer Foundation, Ubbo Emmius Fund, Netherlands Heart Institute, and PLN Foundation. Dr Boogerd was supported by the European Union Horizon 2020 research and innovation program (Marie Skłodowska-Curie grant 751988). The Utrecht Sequencing Facility is subsidized by the University Medical Center Utrecht, Hubrecht Institute, University of Utrecht, and Netherlands X-Omics Initiative (NWO project 184.034.019).

Publisher Copyright:
© 2021 Lippincott Williams and Wilkins. All rights reserved.

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