Dominant ACO2 mutations are a frequent cause of isolated optic atrophy

Author:

Charif Majida12,Gueguen Naïg13,Ferré Marc1,Elkarhat Zouhair4ORCID,Khiati Salim1,LeMao Morgane1,Chevrollier Arnaud1,Desquiret-Dumas Valerie13,Goudenège David13,Bris Céline13,Kane Selma1,Alban Jennifer1,Chupin Stéphanie3,Wetterwald Céline3,Caporali Leonardo5ORCID,Tagliavini Francesca5,LaMorgia Chiara56,Carbonelli Michele5,Jurkute Neringa78910ORCID,Barakat Abdelhamid4,Gohier Philippe1,Verny Christophe111,Barth Magalie12,Procaccio Vincent13,Bonneau Dominique13,Zanlonghi Xavier13,Meunier Isabelle14,Weisschuh Nicole15,Schimpf-Linzenbold Simone16,Tonagel Felix17,Kellner Ulrich1819ORCID,Yu-Wai-Man Patrick78910,Carelli Valerio56,Wissinger Bernd15,Amati-Bonneau Patrizia13,Reynier Pascal13ORCID,Lenaers Guy1,

Affiliation:

1. Université Angers, MitoLab Team, UMR CNRS 6015 - INSERM U1083, Institut MitoVasc, SFR ICAT, Angers, France

2. Genetics and Immuno-Cell Therapy Team, Mohammed First University, Oujda, Morocco

3. Département de Biochimie et Génétique, CHU d'Angers, Angers, France

4. Laboratory of Genomics and Human Genetics, Institut Pasteur du Maroc, Casablanca, Morocco

5. Unit of Neurology, Department of Biomedical and NeuroMotor Sciences (DIBINEM), University of Bologna, Bologna, Italy

6. IRCCS Institute of Neurological Sciences of Bologna, Bellaria Hospital, Bologna, Italy

7. Moorfields Eye Hospital, London, UK

8. UCL Institute of Ophthalmology, University College London, London, UK

9. Cambridge Eye Unit, Addenbrooke’s Hospital, Cambridge University Hospitals, Cambridge, UK

10. Cambridge Centre for Brain Repair and MRC Mitochondrial Biology Unit, Department of Clinical Neurosciences, University of Cambridge, Cambridge, UK

11. Centre de référence des Maladies Neurogénétiques, Département de Neurologie, CHU d’Angers, Angers, France

12. Department of Pediatrics, Competence Center of Inherited Metabolic Disorders, Angers Hospital, Angers, France

13. Eye Clinic, Sourdille Jules Verne, Nantes, France

14. National Center for Rare Diseases, Genetics of Sensory Diseases, University Hospital, Montpellier, France

15. Institute for Ophthalmic Research, Centre for Ophthalmology, University of Tübingen, Tübingen, Germany

16. Praxis für Humangenetik, Tübingen, Germany

17. Centre for Ophthalmology, University of Tübingen, Tübingen, Germany

18. Rare Retinal Disease Center, AugenZentrum Siegburg, MVZ ADTC Siegburg GmbH, Siegburg, Germany

19. RetinaScience, 53113 Bonn, Germany

Abstract

Abstract Biallelic mutations in ACO2, encoding the mitochondrial aconitase 2, have been identified in individuals with neurodegenerative syndromes, including infantile cerebellar retinal degeneration and recessive optic neuropathies (locus OPA9). By screening European cohorts of individuals with genetically unsolved inherited optic neuropathies, we identified 61 cases harbouring variants in ACO2, among whom 50 carried dominant mutations, emphasizing for the first time the important contribution of ACO2 monoallelic pathogenic variants to dominant optic atrophy. Analysis of the ophthalmological and clinical data revealed that recessive cases are affected more severely than dominant cases, while not significantly earlier. In addition, 27% of the recessive cases and 11% of the dominant cases manifested with extraocular features in addition to optic atrophy. In silico analyses of ACO2 variants predicted their deleterious impacts on ACO2 biophysical properties. Skin derived fibroblasts from patients harbouring dominant and recessive ACO2 mutations revealed a reduction of ACO2 abundance and enzymatic activity, and the impairment of the mitochondrial respiration using citrate and pyruvate as substrates, while the addition of other Krebs cycle intermediates restored a normal respiration, suggesting a possible short-cut adaptation of the tricarboxylic citric acid cycle. Analysis of the mitochondrial genome abundance disclosed a significant reduction of the mitochondrial DNA amount in all ACO2 fibroblasts. Overall, our data position ACO2 as the third most frequently mutated gene in autosomal inherited optic neuropathies, after OPA1 and WFS1, and emphasize the crucial involvement of the first steps of the Krebs cycle in the maintenance and survival of retinal ganglion cells.

Publisher

Oxford University Press (OUP)

Subject

General Earth and Planetary Sciences,General Environmental Science

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