Infantile onset spinocerebellar ataxia is caused by recessive mutations in mitochondrial proteins Twinkle and Twinky
Open Access
- 31 August 2005
- journal article
- research article
- Published by Oxford University Press (OUP) in Human Molecular Genetics
- Vol. 14 (20) , 2981-2990
- https://doi.org/10.1093/hmg/ddi328
Abstract
Infantile onset spinocerebellar ataxia (IOSCA) (MIM 271245) is a severe autosomal recessively inherited neurodegenerative disorder characterized by progressive atrophy of the cerebellum, brain stem and spinal cord and sensory axonal neuropathy. We report here the molecular background of this disease based on the positional cloning/candidate approach of the defective gene. Having established the linkage to chromosome 10q24, we restricted the critical DNA region using single nucleotide polymorphism-based haplotypes. After analyzing all positional candidate transcripts, we identified two point mutations in the gene C10orf2 encoding Twinkle, a mitochondrial deoxyribonucleic acid (mtDNA)-specific helicase, and a rarer splice variant Twinky, underlying IOSCA. The founder IOSCA mutation, homozygous in all but one of the patients, leads to a Y508C amino acid change in the polypeptides. One patient, heterozygous for Y508C, carries a silent coding region cytosine to thymine transition mutation in his paternal disease chromosome. This allele is expressed at a reduced level, causing the preponderance of messenger RNAs encoding Y508C polypeptides and thus leads to the IOSCA disease phenotype. Previously, we have shown that different mutations in this same gene cause autosomal dominant progressive external ophthalmoplegia (adPEO) with multiple mtDNA deletions (MIM 606075), a neuromuscular disorder sharing a spectrum of symptoms with IOSCA. IOSCA phenotype is the first recessive one due to Twinkle and Twinky mutations, the dominant PEO mutations affecting mtDNA maintenance, but in IOSCA, mtDNA stays intact. The severe neurological phenotype observed in IOSCA, a result of only a single amino acid substitution in Twinkle and Twinky, suggests that these proteins play a crucial role in the maintenance and/or function of specific affected neuronal subpopulations.Keywords
This publication has 32 references indexed in Scilit:
- cDNA cloning, expression profile and genomic structure of a novel human transcript on chromosome 10q24, and its analyses as a candidate gene for infantile onset spinocerebellar ataxiaGene, 2002
- Friedreich ataxia: a paradigm for mitochondrial diseasesCurrent Opinion in Genetics & Development, 2002
- Human mitochondrial DNA deletions associated with mutations in the gene encoding Twinkle, a phage T7 gene 4-like protein localized in mitochondriaNature Genetics, 2001
- Characterization and expression of sema4g, a novel member of the semaphorin gene familyMechanisms of Development, 1999
- Molecular genetics of the Finnishdisease heritageHuman Molecular Genetics, 1999
- Infantile onset spinocerebellar ataxia with sensory neuropathy (IOSCA): neuropathological featuresJournal of the Neurological Sciences, 1998
- Toward Cloning of a Novel Ataxia Gene: Refined Assignment and Physical Map of the IOSCA Locus (SCA8) on 10q24Genomics, 1997
- Tracing an ancestral mutation: genealogical and haplotype analysis of the infantile onset spinocerebellar ataxia locus.Genome Research, 1996
- Sensory neuropathy in infantile onset spinocerebellar ataxia (IOSCA)Muscle & Nerve, 1994
- Infantile onset spinocerebellar ataxia with sensory neuropathy: A new inherited diseaseJournal of the Neurological Sciences, 1994