Mitochondrial disease
Gene: AFG3L2
OA has only been associated with a specific variant in this gene, R468C. The variant is de novo in some of the families, suggesting a hotspot rather than founder effect.Created: 21 Aug 2020, 7:07 a.m. | Last Modified: 21 Aug 2020, 7:07 a.m.
Panel Version: 0.3863
Mode of inheritance
BOTH monoallelic and biallelic, autosomal or pseudoautosomal
Phenotypes
Spastic ataxia 5, autosomal recessive (MIM#614487); Spinocerebellar ataxia 28 (MIM#610246); Optic atrophy 12, MIM# 618977
Publications
The onset of the recessive form of ataxia is usually in infancy or childhood. The dominantly inherited form of ataxia is mostly adult onset, but onset in childhood has been reported.
Sources: Expert listCreated: 16 Apr 2020, 7:25 a.m.
Mode of inheritance
BOTH monoallelic and biallelic, autosomal or pseudoautosomal
Phenotypes
Spastic ataxia 5, autosomal recessive MIM#614487; Spinocerebellar ataxia 28 MIM#610246
Publications
Gene: afg3l2 has been classified as Green List (High Evidence).
Phenotypes for gene: AFG3L2 were changed from Spastic ataxia 5, autosomal recessive (MIM#614487); Spinocerebellar ataxia 28 (MIM#610246); Optic atrophy 12, MIM# 618977 to Spastic ataxia 5, autosomal recessive (MIM#614487); Spinocerebellar ataxia 28 (MIM#610246); Optic atrophy 12, MIM# 618977
Phenotypes for gene: AFG3L2 were changed from to Spastic ataxia 5, autosomal recessive (MIM#614487); Spinocerebellar ataxia 28 (MIM#610246); Optic atrophy 12, MIM# 618977
Publications for gene: AFG3L2 were set to
Mode of inheritance for gene: AFG3L2 was changed from Unknown to BOTH monoallelic and biallelic, autosomal or pseudoautosomal
gene: AFG3L2 was added gene: AFG3L2 was added to Mitochondrial_AGHA_VCGS. Sources: Expert Review Green,Australian Genomics Health Alliance Mitochondrial Flagship,Victorian Clinical Genetics Services Mode of inheritance for gene: AFG3L2 was set to Unknown