Alpha Protein Kinase 3 Gene Therapy Restores Heart Function in Mouse and Human Models of Cardiomyopathy
McNamara, J.; Keen, E. B.; Sutton, R.; She, Y.; Mehdiabadi, N. R.; Griffen, B.; Mills, R.; Hudson, J. E.; Titmarsh, D.; Porrello, E. R.; Elliott, D.
Show abstract
Truncating variants in the Alpha Kinase 3 (ALPK3) gene have recently emerged as an important cause of genetic cardiomyopathy globally and here we demonstrate the efficacy and safety of a viral-based gene replacement therapy for ALPK3. Given the loss-of-function nature of these variants, we reasoned that a gene replacement approach would improve heart function in this patient population. We demonstrate that the delivery of full length ALPK3 via adeno-associated virus could restore contractile function in human cardiac organoids and in vivo mouse models carrying clinically relevant mutations in ALPK3. The role of disrupted proteostasis networks in multiple forms of genetic cardiomyopathy suggest that delivery this novel AAV-ALPK3 may provide functional benefit outside of cardiomyopathy induced by ALPK3. Titin truncating variants (TTNtv) are the most common cause of dilated cardiomyopathy, and interestingly also contributes to the M-Band protein quality control network coordinated by ALPK3. Notably, in human cardiac organoids carrying a TTNtv we observed that the ALPK3 gene therapy could completely restore contractile deficits. This opens the exciting prospect for indication expansion of AAV-ALPK3 into other forms of cardiomyopathy that currently have no therapeutic options.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Tbx5 maintains atrial identity by regulating an atrial enhancer network 93%
- Targeted glycophagy ATG8 therapy reverses diabetic heart disease in mice and in human engineered cardiac tissues 93%
- Ablation of three major phospho-sites in RyR2 preserves the global adrenergic response but creates an arrhythmogenic substrate 93%
Similar papers in this journal
- Increased CPT1a expression is a critical cardioprotective response to pathological stress that suppresses gene programs for remodeling and enables rescue by gene transfer 95%
- RBPMS and RBPMS2 Cooperate to Safeguard Cardiac Splicing 93%
- KMT2D-NOTCH Mediates Coronary Abnormalities in Hypoplastic Left Heart Syndrome 93%
Similar papers in this journal
- Adrenergic Hypersensitivity Drives Ventricular Arrhythmias Following Loss of Plexin-Mediated Cardiac Innervation 94%
- Vascular Endothelial Barrier Protection Prevents Atrial Fibrillation by Preserving Cardiac Nanostructure 93%
- Unraveling Chamber-specific Differences in Intercalated Disc Ultrastructure and Molecular Organization and Their Impact on Cardiac Conduction 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.