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The Legs at odd angles (Loa) Mutation in Cytoplasmic Dynein Ameliorates Mitochondrial Function in SOD1G93A Mouse Model for Motor Neuron Disease
Authors:Ali Morsi El-Kadi  Virginie Bros-Facer  Wenhan Deng  Amelia Philpott  Eleanor Stoddart  Gareth Banks  Graham S Jackson  Elizabeth M C Fisher  Michael R Duchen  Linda Greensmith  Anthony L Moore  and Majid Hafezparast
Institution:From the Biochemistry and Biomedical Science, School of Life Sciences, University of Sussex, Brighton BN1 9QG, ;the §Sobell Department of Motor Neuroscience and Movement Disorders and ;the Department of Neurodegenerative Disease, UCL Institute of Neurology, London WC1N 3BG, and ;Cell and Developmental Biology, UCL Division of Biosciences, London WC1B 6BT, United Kingdom
Abstract:Amyotrophic lateral sclerosis (ALS) is a debilitating and fatal late-onset neurodegenerative disease. Familial cases of ALS (FALS) constitute ~10% of all ALS cases, and mutant superoxide dismutase 1 (SOD1) is found in 15–20% of FALS. SOD1 mutations confer a toxic gain of unknown function to the protein that specifically targets the motor neurons in the cortex and the spinal cord. We have previously shown that the autosomal dominant Legs at odd angles (Loa) mutation in cytoplasmic dynein heavy chain (Dync1h1) delays disease onset and extends the life span of transgenic mice harboring human mutant SOD1G93A. In this study we provide evidence that despite the lack of direct interactions between mutant SOD1 and either mutant or wild-type cytoplasmic dynein, the Loa mutation confers significant reductions in the amount of mutant SOD1 protein in the mitochondrial matrix. Moreover, we show that the Loa mutation ameliorates defects in mitochondrial respiration and membrane potential observed in SOD1G93A motor neuron mitochondria. These data suggest that the Loa mutation reduces the vulnerability of mitochondria to the toxic effects of mutant SOD1, leading to improved mitochondrial function in SOD1G93A motor neurons.
Keywords:Amyotropic Lateral Sclerosis (Lou Gehrig''s Disease)  Dynein  Mitochondria  Mitochondrial Transport  Neurodegeneration  ALS  Axonal Transport  Loa  Motor Neuron Disease  Superoxide Dismutase 1 (SOD1)
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