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Mitochondrial targeting of recombinant RNAs modulates the level of a heteroplasmic mutation in human mitochondrial DNA associated with Kearns Sayre Syndrome
Authors:Caroline Comte  Yann Tonin  Anne-Marie Heckel-Mager  Abdeldjalil Boucheham  Alexandre Smirnov  Karine Auré   Anne Lombès  Robert P. Martin  Nina Entelis  Ivan Tarassov
Affiliation:1Department of Molecular and Cellular Genetics, UMR Génétique Moléculaire, Génomique, Microbiologie (GMGM), CNRS - Université de Strasbourg, Strasbourg and 2Centre de Recherche de l''Institut du Cerveau et de la Moëlle (CRICM); INSERM UMRS 975, CNRS UMR 7225, UPMC, Paris, France
Abstract:Mitochondrial mutations, an important cause of incurable human neuromuscular diseases, are mostly heteroplasmic: mutated mitochondrial DNA is present in cells simultaneously with wild-type genomes, the pathogenic threshold being generally >70% of mutant mtDNA. We studied whether heteroplasmy level could be decreased by specifically designed oligoribonucleotides, targeted into mitochondria by the pathway delivering RNA molecules in vivo. Using mitochondrially imported RNAs as vectors, we demonstrated that oligoribonucleotides complementary to mutant mtDNA region can specifically reduce the proportion of mtDNA bearing a large deletion associated with the Kearns Sayre Syndrome in cultured transmitochondrial cybrid cells. These findings may be relevant to developing of a new tool for therapy of mtDNA associated diseases.
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