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Autophagy guided interventions to modify the cardiac phenotype of Danon disease
Dor Yadin1, Zachary Petrover2, Asher Shainberg3
1Felsenstein Research Center and the Department of Cardiothoracic, Rabin Medical Center, Sackler School of Medicine, Tel-Aviv University, Petach Tikva, Israel; Leviev Heart Center, Sheba Medical Center, Sackler School of Medicine, Tel-Aviv University, Israel.
Abstract:
Danon disease is a lethal X-linked genetic syndrome resulting from radical mutations in the LAMP2 gene. LAMP2 protein deficiency results in defective lysosomal function, autophagy arrest and a multisystem disorder primarily involving the heart, skeletal muscle and the central nervous system. Cardiomyopathy is the main cause of morbidity and mortality. To investigate the mechanisms of and develop therapies for cardiac Danon disease we engineered a mouse model carrying an exon 6 deletion human mutation in LAMP2, which recapitulates the human cardiac disease phenotype. Mice develop cardiac hypertrophy followed by left ventricular dilatation and systolic dysfunction, in association with progressive fibrosis, oxidative stress, accumulation of autophagosomes and activation of proteasome. Stimulation of autophagy in Danon mice (by exercise training, caloric restriction, and rapamycin) aggravate the disease phenotype, promoting dilated cardiomyopathy. Inhibiting autophagy (by high fat diet or hydroxychloroquine) is better tolerated by Danon mice compared to wild type but is not curative. Inhibiting proteasome by Velcade was found to be highly toxic to Danon mice, suggesting that proteasome is activated to compensate for defective autophagy. In conclusion, activation of autophagy should be avoided in Danon patients. Since Danon's is a lifelong disease, we suggest that lifestyle interventions to decrease cardiac stress may be useful to slow progression of Danon's cardiomyopathy. While Danon mice better tolerate high fat diet and sedentary lifestyle, the benefit regarding cardiomyopathy in humans needs to be balanced against other health consequences of such interventions.
Insights
Danon disease, caused by LAMP2 gene mutations, leads to heart failure. Stimulating autophagy worsens the condition, while inhibiting it offers no cure. Lifestyle changes may slow cardiac progression.
Area of Science:
- Genetics and Molecular Biology
- Cardiovascular Medicine
- Cellular Biology
Background:
- Danon disease is a severe X-linked genetic disorder caused by LAMP2 gene mutations.
- LAMP2 deficiency impairs lysosomal function and autophagy, leading to multisystemic disease, primarily affecting the heart.
Purpose of the Study:
- To investigate the mechanisms underlying cardiac Danon disease.
- To develop potential therapeutic strategies for cardiac manifestations of Danon disease.
Main Methods:
- Engineered a mouse model with an exon 6 deletion in the LAMP2 gene, mimicking human cardiac phenotype.
- Assessed cardiac function, fibrosis, oxidative stress, and autophagosome accumulation.
- Evaluated the effects of autophagy stimulation and inhibition, and proteasome inhibition.
Main Results:
- Danon mice exhibited cardiac hypertrophy, dilatation, systolic dysfunction, fibrosis, and oxidative stress.
- Autophagy stimulation aggravated cardiomyopathy in Danon mice.
- Autophagy inhibition was better tolerated but not curative; proteasome inhibition was toxic.
Conclusions:
- Autophagy activation should be avoided in Danon disease patients.
- Lifestyle interventions reducing cardiac stress may slow cardiomyopathy progression.
- Therapeutic strategies require careful consideration of disease mechanisms and potential side effects.
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