Somatic expansion of the Huntington's disease CAG repeat in the brain is associated with an earlier age of disease onset
Open Access
- 23 May 2009
- journal article
- research article
- Published by Oxford University Press (OUP) in Human Molecular Genetics
- Vol. 18 (16) , 3039-3047
- https://doi.org/10.1093/hmg/ddp242
Abstract
The age of onset of Huntington's disease (HD) is determined primarily by the length of the HD CAG repeat mutation, but is also influenced by other modifying factors. Delineating these modifiers is a critical step towards developing validated therapeutic targets in HD patients. The HD CAG repeat is somatically unstable, undergoing progressive length increases over time, particularly in brain regions that are the targets of neurodegeneration. Here, we have explored the hypothesis that somatic instability of the HD CAG repeat is itself a modifier of disease. Using small-pool PCR, we quantified somatic instability in the cortex region of the brain from a cohort of HD individuals exhibiting phenotypic extremes of young and old disease onset as predicted by the length of their constitutive HD CAG repeat lengths. After accounting for constitutive repeat length, somatic instability was found to be a significant predictor of onset age, with larger repeat length gains associated with earlier disease onset. These data are consistent with the hypothesis that somatic HD CAG repeat length expansions in target tissues contribute to the HD pathogenic process, and support pursuing factors that modify somatic instability as viable therapeutic targets.Keywords
This publication has 47 references indexed in Scilit:
- DNA instability in replicating Huntington's disease lymphoblastsBMC Medical Genetics, 2009
- Intergenerational and striatal CAG repeat instability in Huntington's disease knock-in mice involve different DNA repair genesNeurobiology of Disease, 2008
- Detection of Huntington's disease decades before diagnosis: the Predict-HD studyJournal of Neurology, Neurosurgery & Psychiatry, 2008
- DNA instability in postmitotic neuronsProceedings of the National Academy of Sciences, 2008
- Cerebral cortex and the clinical expression of Huntington's disease: complexity and heterogeneityBrain, 2008
- A Universal Mechanism Ties Genotype to Phenotype in Trinucleotide DiseasesPLoS Computational Biology, 2007
- OGG1 initiates age-dependent CAG trinucleotide expansion in somatic cellsNature, 2007
- Replication of twelve association studies for Huntington's disease residual age of onset in large Venezuelan kindredsJournal of Medical Genetics, 2006
- (CAG)n-hairpin DNA binds to Msh2–Msh3 and changes properties of mismatch recognitionNature Structural & Molecular Biology, 2005
- A new polymerase chain reaction (PCR) assay for the trinucleotide repeat that is unstable and expanded on Huntington's disease chromosomesMolecular and Cellular Probes, 1993