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Deferiprone and idebenone rescue frataxin depletion phenotypes in a Drosophila model of Friedreich's ataxia
Authors:Sirena Soriano  José V Llorens  Laura Blanco-Sobero  Lucía Gutiérrez  Pablo Calap-Quintana  M Puerto Morales  M Dolores Moltó  M José Martínez-Sebastián
Institution:1. Departament de Genètica, Universitat de València, Burjassot, Valencia, Spain;2. Instituto de Biomedicina, CSIC, Valencia, Spain;3. Instituto de Ciencia de Materiales de Madrid/CSIC, Madrid, Spain;4. CIBERSAM (Centro de Investigación Biomédica en Red de Salud Mental), INCLIVA, Spain
Abstract:Friedreich's ataxia (FRDA), the most common inherited ataxia, is a neurodegenerative disease caused by a reduction in the levels of the mitochondrial protein frataxin, the function of which remains a controversial matter. Several therapeutic approaches are being developed to increase frataxin expression and reduce the intramitochondrial iron aggregates and oxidative damage found in this disease. In this study, we tested separately the response of a Drosophila RNAi model of FRDA ( Llorens et al., 2007) to treatment with the iron chelator deferiprone (DFP) and the antioxidant idebenone (IDE), which are both in clinical trials. The FRDA flies have a shortened life span and impaired motor coordination, and these phenotypes are more pronounced in oxidative stress conditions. In addition, under hyperoxia, the activity of the mitochondrial enzyme aconitase is strongly reduced in the FRDA flies. This study reports that DFP and IDE improve the life span and motor ability of frataxin-depleted flies. We show that DFP eliminates the excess of labile iron in the mitochondria and thus prevents the toxicity induced by iron accumulation. IDE treatment rescues aconitase activity in hyperoxic conditions. These results validate the use of our Drosophila model of FRDA to screen for therapeutic molecules to treat this disease.
Keywords:BPS  bathophenanthroline disulfonate  DFP  deferiprone  6-FAM  6-carboxyfluorescein  fh  Drosophila frataxin homolog  FRDA  Friedreich's ataxia  GFP  green fluorescent protein  IDE  idebenone  neur-GAL4  neuralized-GAL4  PNS  peripheral nervous system  ROS  reactive oxygen species  RT-qPCR  Real-Time Polymerase Chain Reaction  Yfh  yeast frataxin homolog
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