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KLHL40 gene replacement therapy in severe nemaline myopathy improves survival and skeletal muscle function in a preclinical mouse model

Created on 26 Sep 2026

Authors

Tate, G. R., McNulty, J., Widrick, J., Gupta, V. A.

Abstract

Nemaline myopathy is a severe inherited skeletal muscle disorder characterized by profound muscle weakness, impaired mobility, and early mortality in severe cases. Despite the devastating clinical burden, no disease-modifying therapies are currently available. Nemaline myopathy-causing genes either encode sarcomeric structural proteins or regulators of sarcomeric protein stability, resulting in primary defects in sarcomere structure and function. Recessive mutations in KLHL40 cause one of the most severe forms of nemaline myopathy, frequently resulting in perinatal lethality. Given its loss-of-function mechanism, KLHL40-associated nemaline myopathy is an attractive candidate for gene replacement therapy. We therefore evaluated the therapeutic potential of systemic AAV9-mediated KLHL40 gene replacement in a mouse model of severe nemaline myopathy. A single systemic administration of an AAV9 vector encoding human KLHL40 during early disease produced durable rescue of survival, skeletal muscle pathology, motor performance, and contractile function in KLHL40-deficient mice. Therapeutic benefit was accompanied by restoration of sarcomere organization and normalization of myofiber size without detectable long-term histopathological abnormalities in major organs. Collectively, our findings provide a strong preclinical foundation for developing AAV9-mediated KLHL40 gene replacement as a treatment for severe KLHL40-associated nemaline myopathy.

Preprint server: bioRxiv
The authors list and abstract were imported from bioRxiv on 26 Sep 2026.

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