ACO2 mutations: A novel phenotype associating severe optic atrophy and spastic paraplegia

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Abstract

Aconitase 2 (ACO2) encodes the mitochondrial aconitase (ACO2), an enzyme catalyzing interconversion of citrate into isocitrate in the Krebs cycle. ACO2 mutations have been initially associated with infantile cerebellar-retinal degeneration combining optic atrophy, retinal degeneration, severe encephalopathy, epilepsy, and cerebellar ataxia1-3; subsequently, ACO2 mutations have also been associated with milder presentations including isolated optic atrophy2 or cerebellar ataxia without optic atrophy.4 We report here a patient presenting with a novel ACO2 phenotype associating optic atrophy with spastic paraplegia.

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Marelli, C., Hamel, C., Quiles, M., Carlander, B., Larrieu, L., Delettre, C., … Guissart, C. (2018). ACO2 mutations: A novel phenotype associating severe optic atrophy and spastic paraplegia. Neurology: Genetics, 4(2). https://doi.org/10.1212/NXG.0000000000000225

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