MitoTALEN reduces mutant mtDNA load and restores tRNA<sup>Ala</sup> levels in a mouse model of heteroplasmic mtDNA mutation.

Bacman, Sandra R; Kauppila, Johanna H K; Pereira, Claudia V; Nissanka, Nadee; Miranda, Maria; Pinto, Milena; Williams, Sion L; Larsson, Nils-Göran et al. · Nat Med · 2018

basic_science · Level V

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Abstract

Mutations in the mitochondrial DNA (mtDNA) are responsible for several metabolic disorders, commonly involving muscle and the central nervous system<sup>1</sup>. Because of the critical role of mtDNA in oxidative phosphorylation, the majority of pathogenic mtDNA mutations are heteroplasmic, co-existing with wild-type molecules<sup>1</sup>. Using a mouse model with a heteroplasmic mtDNA mutation<sup>2</sup>, we tested whether mitochondrial-targeted TALENs (mitoTALENs)<sup>3,4</sup> could reduce the mutant mtDNA load in muscle and heart. AAV9-mitoTALEN was administered via intramuscular, intravenous, and intraperitoneal injections. Muscle and heart were efficiently transduced and showed a robust reduction in mutant mtDNA, which was stable over time. The molecular defect, namely a decrease in transfer RNA<sup>Ala</sup> levels, was restored by the treatment. These results showed that mitoTALENs, when expressed in affected tissues, could revert disease-related phenotypes in mice.

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