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POPDC1(S201F) causes muscular dystrophy and arrhythmia by affecting protein trafficking

Authors :
Hui Jiang
Francesca Romana Di Raimo
Subreena Simrick
Giorgio Tasca
Jianguo Zhang
Fabiana Fattori
C. Scotton
Claudio Rapezzi
Thomas Brand
Bruno Dallapiccola
Rita Selvatici
Niels Decher
Alexander Froese
Viacheslav O. Nikolaev
Antonello Pietrangelo
Roland F.R. Schindler
Jun Wang
Fabrizio Drago
Enrico Bertini
Susanne Rinné
Marcella Neri
Alessandra Ferlini
Thorsten Schwerte
Kar Lai Poon
Thomas Müller
Christiane Grunert
Wenyan Li
Eloisa Arbustini
Mingyan Fang
Xun Xu
Chiara Passarelli
Beatriz Ortiz-Bonnin
Padmini Sarathchandra
Francesca Gualandi
Schindler, Roland F. R.
Scotton, Chiara
Zhang, Jianguo
Passarelli, Chiara
Ortiz-Bonnin, Beatriz
Simrick, Subreena
Schwerte, Thorsten
Poon, Kar-Lai
Fang, Mingyan
Rinné, Susanne
Froese, Alexander
Nikolaev, Viacheslav O.
Grunert, Christiane
Müller, Thoma
Tasca, Giorgio
Sarathchandra, Padmini
Drago, Fabrizio
Dallapiccola, Bruno
Rapezzi, Claudio
Arbustini, Eloisa
Romana Di Raimo, Francesca
Neri, Marcella
Selvatici, Rita
Gualandi, Francesca
Fattori, Fabiana
Pietrangelo, Antonello
Li, Wenyan
Jiang, Hui
Xu, Xun
Bertini, Enrico
Decher, Niel
Wang, Jun
Brand, Thoma
Ferlini, Alessandra
Medical Research Council (MRC)
British Heart Foundation
The Magdi Yacoub Institute
Source :
The Journal of clinical investigation. 126(1)
Publication Year :
2014

Abstract

The Popeye domain-containing 1 (POPDC1) gene encodes a plasma membrane-localized cAMP-binding protein that is abundantly expressed in striated muscle. In animal models, POPDC1 is an essential regulator of structure and function of cardiac and skeletal muscle; however, POPDC1 mutations have not been associated with human cardiac and muscular diseases. Here, we have described a homozygous missense variant (c.602C>T, p.S201F) in POPDC1, identified by whole-exome sequencing, in a family of 4 with cardiac arrhythmia and limb-girdle muscular dystrophy (LGMD). This allele was absent in known databases and segregated with the pathological phenotype in this family. We did not find the allele in a further screen of 104 patients with a similar phenotype, suggesting this mutation to be family specific. Compared with WT protein, POPDC1(S201F) displayed a 50% reduction in cAMP affinity, and in skeletal muscle from patients, both POPDC1(S201F) and WT POPDC2 displayed impaired membrane trafficking. Forced expression of POPDC1(S201F) in a murine cardiac muscle cell line (HL-1) increased hyperpolarization and upstroke velocity of the action potential. In zebrafish, expression of the homologous mutation (popdc1(S191F)) caused heart and skeletal muscle phenotypes that resembled those observed in patients. Our study therefore identifies POPDC1 as a disease gene causing a very rare autosomal recessive cardiac arrhythmia and LGMD, expanding the genetic causes of this heterogeneous group of inherited rare diseases. peerReviewed

Details

ISSN :
15588238
Volume :
126
Issue :
1
Database :
OpenAIRE
Journal :
The Journal of clinical investigation
Accession number :
edsair.doi.dedup.....68111b0f59b4956a7ae95533cfc4129d