Serine biosynthesis as a novel therapeutic target for dilated cardiomyopathy
European Heart Journal

Abstract
Genetic dilated cardiomyopathy (DCM) is a leading cause of heart failure. Despite significant progress in understanding the genetic aetiologies of DCM, the molecular mechanisms underlying the pathogenesis of familial DCM remain unknown, translating to a lack of disease-specific therapies. The discovery of novel targets for the treatment of DCM was sought using phenotypic sceening assays in induced pluripotent stem cell-derived cardiomyocytes (iPSC-CMs) that recapitulate the disease phenotypes
Using patient-specific iPSCs carrying a pathogenic
A phenotypic screening platform using DCM iPSC-CMs was established for therapeutic target discovery. A combination of SMKIs ameliorated contractile and metabolic dysfunction in DCM iPSC-CMs mediated via the ATF4-dependent serine biosynthesis pathway. Together, these findings suggest that modulation of serine biosynthesis signalling may represent a novel genotype-agnostic therapeutic strategy for genetic DCM.
Contributors

Isaac Perea-Gil
Author

Timon Seeger
Author

Arne A N Bruyneel
Author

Vittavat Termglinchan
Author

Emma Monte
Author

Esther W Lim
Author

Nirmal Vadgama
Author

Takaaki Furihata
Author

Alexandra A Gavidia
Author

Jennifer Arthur Ataam
Author

Nike Bharucha
Author

Noel Martinez-Amador
Author

Mohamed Ameen
Author

Pooja Nair
Author

Ricardo Serrano
Author

Balpreet Kaur
Author

Dries A M Feyen
Author

Sebastian Diecke
Author

Michael P Snyder
Author

Christian M Metallo
Author

Mark Mercola
Author
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