Titin-truncating variants affect heart function in disease cohorts and the general population

2017 | journal article; research paper

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​Titin-truncating variants affect heart function in disease cohorts and the general population​
Schäfer, S. ; de Marvao, A.; Adami, E.; Fiedler, L. R.; Ng, B.; Khin, E. & Rackham, O. J. L. et al.​ (2017) 
Nature Genetics49(1) pp. 46​-53​.​ DOI: https://doi.org/10.1038/ng.3719 

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Authors
Schäfer, Sebastian ; de Marvao, Antonio; Adami, Eleonora; Fiedler, Lorna R.; Ng, Benjamin; Khin, Ester; Rackham, Owen J. L.; van Heesch, Sebastiaan; Pua, Chee J.; Kui, Miao; Walsh, Roddy; Tayal, Upasana; Prasad, Sanjay K.; Dawes, Timothy J. W.; Ko, Nicole S. J.; Sim, David; Chan, Laura L. H.; Chin, Calvin W. L.; Mazzarotto, Francesco; Barton, Paul J.; Kreuchwig, Franziska; de Kleijn, Dominique P. V.; Totman, Teresa; Biffi, Carlo; Tee, Nicole; Rueckert, Daniel; Schneider, Valentin; Faber, Allison; Regitz-Zagrosek, Vera; Seidman, Jonathan G.; Seidman, Christine E.; Linke, Wolfgang A. ; Kovalik, Jean-Paul; O'Regan, Declan; Ware, James S.; Hubner, Norbert; Cook, Stuart A.
Abstract
Titin-truncating variants (TTNtv) commonly cause dilated cardiomyopathy (DCM). TTNtv are also encountered in ~1% of the general population, where they may be silent, perhaps reflecting allelic factors. To better understand TTNtv, we integrated TTN allelic series, cardiac imaging and genomic data in humans and studied rat models with disparate TTNtv. In patients with DCM, TTNtv throughout titin were significantly associated with DCM. Ribosomal profiling in rat showed the translational footprint of premature stop codons in Ttn, TTNtv-position-independent nonsense-mediated degradation of the mutant allele and a signature of perturbed cardiac metabolism. Heart physiology in rats with TTNtv was unremarkable at baseline but became impaired during cardiac stress. In healthy humans, machine-learning-based analysis of high-resolution cardiac imaging showed TTNtv to be associated with eccentric cardiac remodeling. These data show that TTNtv have molecular and physiological effects on the heart across species, with a continuum of expressivity in health and disease.
Issue Date
2017
Journal
Nature Genetics 
Project
SFB 1002: Modulatorische Einheiten bei Herzinsuffizienz 
SFB 1002 | A08: Translationale und posttranslationale Kontrolle trunkierter Titinproteine in Kardiomyozyten von Patienten mit dilatativer Kardiomyopathie 
Working Group
RG Linke (Kardiovaskuläre Physiologie) 
ISSN
1546-1718
Language
English

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