Opa1 deficiency in a mouse model of autosomal dominant optic atrophy impairs mitochondrial morphology, optic nerve structure and visual function

Vanessa J. Davies, Andrew J. Hollins, Malgorzata J. Piechota, Wanfen Yip, Jennifer R. Davies, Kathryn E. White, Phillip P. Nicols, Michael E. Boulton, Marcela Votruba

Research output: Contribution to journalArticle

223 Citations (Scopus)

Abstract

OPA1 is a ubiquitously expressed, nuclear dynamin-related GTPase, targeted to the inner mitochondrial membrane, which plays a role in mitochondrial fusion. Mutations in the OPA1 gene on chromosome 3q28-qter are associated with autosomal dominant optic atrophy (ADOA), the most common inherited optic neuropathy, in which retinal ganglion cells (RGCs) are lost and visual acuity is impaired from an early age. We have generated a novel ENU-induced mutant mouse carrying a protein-truncating nonsense mutation in opa1 in order to explore the pathophysiology of ADOA. The heterozygous mutation, B6; C3-Opa1Q285STOP, located in exon 8 immediately before the central dynamin-GTPase, leads to ∼ 50% reduction in opa1 protein in retina and all tissues on western analysis. The homozygous mutation is embryonic lethal by 13.5 days post coitum, demonstrating the importance of Opa1 during early development. Fibroblasts taken from adult heterozygous mutant mice show an apparent alteration in morphology, with an increase in mitochondrial fission and fragmentation. Heterozygous mutants show a slow onset of degeneration in the optic nerve electron microscopy. Furthermore, they demonstrate a functional reduction in visual function on testing with the optokinetic drum and the circadian running wheel. These findings indicate that the opa1 GTPase contains crucial information required for the survival of RGCs and that Opa1 is essential for early embryonic survival. The Opa1+/- mice described here provide a means to directly investigate the cellular pathophysiology of OPA1 ADOA.

Original languageEnglish (US)
Pages (from-to)1307-1318
Number of pages12
JournalHuman Molecular Genetics
Volume16
Issue number11
DOIs
StatePublished - Jun 2007
Externally publishedYes

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Autosomal Dominant Optic Atrophy
GTP Phosphohydrolases
Optic Nerve
Mitochondrial Dynamics
Dynamins
Retinal Ganglion Cells
Mutation
Optic Nerve Diseases
Nonsense Codon
Mitochondrial Membranes
Running
Visual Acuity
Retina
Exons
Electron Microscopy
Proteins
Fibroblasts
Chromosomes
Genes

ASJC Scopus subject areas

  • Genetics

Cite this

Opa1 deficiency in a mouse model of autosomal dominant optic atrophy impairs mitochondrial morphology, optic nerve structure and visual function. / Davies, Vanessa J.; Hollins, Andrew J.; Piechota, Malgorzata J.; Yip, Wanfen; Davies, Jennifer R.; White, Kathryn E.; Nicols, Phillip P.; Boulton, Michael E.; Votruba, Marcela.

In: Human Molecular Genetics, Vol. 16, No. 11, 06.2007, p. 1307-1318.

Research output: Contribution to journalArticle

Davies, VJ, Hollins, AJ, Piechota, MJ, Yip, W, Davies, JR, White, KE, Nicols, PP, Boulton, ME & Votruba, M 2007, 'Opa1 deficiency in a mouse model of autosomal dominant optic atrophy impairs mitochondrial morphology, optic nerve structure and visual function', Human Molecular Genetics, vol. 16, no. 11, pp. 1307-1318. https://doi.org/10.1093/hmg/ddm079
Davies, Vanessa J. ; Hollins, Andrew J. ; Piechota, Malgorzata J. ; Yip, Wanfen ; Davies, Jennifer R. ; White, Kathryn E. ; Nicols, Phillip P. ; Boulton, Michael E. ; Votruba, Marcela. / Opa1 deficiency in a mouse model of autosomal dominant optic atrophy impairs mitochondrial morphology, optic nerve structure and visual function. In: Human Molecular Genetics. 2007 ; Vol. 16, No. 11. pp. 1307-1318.
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