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Updated: May 5, 2026

Fractionation for Resolution of Soluble and Insoluble Huntingtin Species
Published on: February 27, 2018
Global changes to the ubiquitin system in Huntington's disease
Eric J Bennett1, Thomas A Shaler, Ben Woodman
1Department of Biological Sciences, Stanford University, Stanford, California 94305, USA.
Insights
Huntington's disease (HD) involves brain accumulation of polyubiquitin chains, indicating impaired ubiquitin-proteasome system (UPS) function. This dysfunction is an early and consistent feature of HD pathology in both mouse models and human patients.
Area of Science:
- Neuroscience
- Genetics
- Biochemistry
Background:
- Huntington's disease (HD) is a neurodegenerative disorder caused by CAG repeat expansion in the huntingtin (HTT) gene.
- Ubiquitin accumulation in inclusion bodies suggests a role for ubiquitin metabolism dysfunction in HD pathogenesis.
- The ubiquitin-proteasome system (UPS) regulates critical cellular processes, but its role in HD remains debated.
Purpose of the Study:
- To investigate the function of the UPS in Huntington's disease pathogenesis.
- To determine if UPS dysfunction is a consistent feature of HD pathology.
- To identify potential biomarkers of UPS dysfunction in HD.
Main Methods:
- Utilized a mass-spectrometry-based method to quantify polyubiquitin chains.
- Analyzed brain tissue from R6/2 transgenic mice, knock-in HD mouse models, and human HD patients.
- Measured the abundance of different types of polyubiquitin chains (Lys 48, Lys 63, Lys 11-linked).
Main Results:
- Accumulation of Lys 48-linked polyubiquitin chains was observed early in HD pathogenesis in all models studied.
- This accumulation serves as a reliable endogenous biomarker of UPS dysfunction in HD.
- Lys 63- and Lys 11-linked polyubiquitin chains also accumulated in the R6/2 mouse model.
Conclusions:
- UPS dysfunction is a consistent and early feature of Huntington's disease pathology.
- Global changes in the ubiquitin system are more extensive in HD than previously recognized.
- These findings highlight the UPS as a potential therapeutic target for HD.
Abstract:
Huntington's disease (HD) is a dominantly inherited neurodegenerative disorder caused by expansion of CAG triplet repeats in the huntingtin (HTT) gene (also called HD) and characterized by accumulation of aggregated fragments of polyglutamine-expanded HTT protein in affected neurons. Abnormal enrichment of HD inclusion bodies with ubiquitin, a diagnostic characteristic of HD and many other neurodegenerative disorders including Alzheimer's and Parkinson's diseases, has suggested that dysfunction in ubiquitin metabolism may contribute to the pathogenesis of these diseases. Because modification of proteins with polyubiquitin chains regulates many essential cellular processes including protein degradation, cell cycle, transcription, DNA repair and membrane trafficking, disrupted ubiquitin signalling is likely to have broad consequences for neuronal function and survival. Although ubiquitin-dependent protein degradation is impaired in cell-culture models of HD and of other neurodegenerative diseases, it has not been possible to evaluate the function of the ubiquitin-proteasome system (UPS) in HD patients or in animal models of the disease, and a functional role for UPS impairment in neurodegenerative disease pathogenesis remains controversial. Here we exploit a mass-spectrometry-based method to quantify polyubiquitin chains and demonstrate that the abundance of these chains is a faithful endogenous biomarker of UPS function. Lys 48-linked polyubiquitin chains accumulate early in pathogenesis in brains from the R6/2 transgenic mouse model of HD, from a knock-in model of HD and from human HD patients, establishing that UPS dysfunction is a consistent feature of HD pathology. Lys 63- and Lys 11-linked polyubiquitin chains, which are not typically associated with proteasomal targeting, also accumulate in the R6/2 mouse brain. Thus, HD is linked to global changes in the ubiquitin system to a much greater extent than previously recognized.
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