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◆ Nature cardiovascular research2026-08-19

Alpha protein kinase 3 gene therapy restores heart function in mouse and human models of cardiomyopathy.

James W McNamara, Ellen B Keen, Rebecca Sutton, Yinghan She, Hannah Huckstep, Lina H H Le, Neda R Mehdiabadi, Madhavan S Venkatesh, Brendan Griffen, Richard J Mills, Christina V Theodoris, James E Hudson, Drew M Titmarsh, Sean J Humphrey, Enzo R Porrello, David A Elliott

原始摘要(英文原文)· Original abstract
Truncating variants in the ALPK3 gene (encoding alpha protein kinase 3) cause severe cardiomyopathy for which no curative treatment exists1-3. Here we establish an adeno-associated virus (AAV)-mediated gene replacement therapy to deliver full-length human ALPK3. AAV-ALPK3 prevented disease in neonatal Alpk3-mutant mice and reversed established pathology in adults, with proteomic analysis demonstrating reversal of more than 95% of the molecular disease signature. Beyond ALPK3 deficiency, we explored broader therapeutic potential based on ALPK3's regulatory role in proteostasis, a pathway commonly disrupted across cardiomyopathies. ALPK3 expression is reduced in cardiomyocytes with TTN-truncating variants, the most prevalent cause of dilated cardiomyopathy, and the encoded titin protein has a protein quality control network in common with ALPK3. AAV-ALPK3 restored contractile function in human cardiac organoids with an ALPK3- or TTN-truncating variant. These findings provide proof of concept for ALPK3 gene therapy in patients with ALPK3 cardiomyopathy and reveal potential for indication expansion to cardiomyopathies associated with TTN-truncating variants, which are not amenable to gene replacement therapy due to size limitations.
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Alpha protein kinase 3 gene therapy restores heart function in mouse and human models of cardiomyopathy. — 科研速览 Science Skim