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Association of CAG Repeats With Long-term Progression in Huntington Disease
Douglas R Langbehn1, Julie C Stout2, Sarah Gregory3
1Department of Psychiatry, University of Iowa, Iowa City.
Insights
Huntington disease (HD) progression is strongly linked to CAG repeat length, impacting motor-cognitive function and brain volume. This CAG repeat length dependence guides clinical trial design for HD.
Area of Science:
- Neuroscience
- Genetics
- Clinical Neurology
Background:
- Huntington disease (HD) severity is linked to CAG trinucleotide repeat length, predicting onset age but not trajectory.
- Quantifiable measures for decades-long early HD progression are needed for clinical trial design.
- Understanding the age-CAG association in early HD is critical for trial sample size and intervention timing.
Purpose of the Study:
- To develop succinct summary measures of early Huntington disease (HD) progression.
- To characterize the dependence of HD progression on CAG repeat length over decades.
Main Methods:
- Prospective study of 290 HD gene carriers and 153 controls across 4 centers.
- Follow-up ranged from 0 to 6 years (January 2008 to November 2014).
- Outcome measures included principal component summary scores of motor-cognitive function and brain volumes, analyzed for association with age and CAG repeat length.
Main Results:
- Motor-cognitive measures correlated highly, with a composite score explaining 67.6% of variance, showing CAG repeat length-dependent progression and acceleration through stage II.
- Brain measures showed distinct patterns: basal ganglia volume loss accelerated minimally with age, despite early changes.
- Both clinical and brain summary scores strongly correlated with the onset and rate of functional decline.
Conclusions:
- Succinct summary measures effectively capture HD progression across a broad disease spectrum.
- CAG repeat length is a strong predictor of decline rate in both function and brain volume.
- This study enhances understanding of the age and CAG repeat length-dependent relationship between brain changes and clinical HD manifestations.
Importance:
In Huntington disease (HD), mutation severity is defined by the length of the CAG trinucleotide sequence, a well-known predictor of clinical onset age. The association with disease trajectory is less well characterized. Quantifiable summary measures of trajectory applicable over decades of early disease progression are lacking. An accurate model of the age-CAG association with early progression is critical to clinical trial design, informing both sample size and intervention timing.
Objective:
To succinctly capture the decades-long early progression of HD and its dependence on CAG repeat length.
Design, Setting, And Participants:
Prospective study at 4 academic HD treatment and research centers. Participants were the combined sample from the TRACK-HD and Track-On HD studies consisting of 290 gene carriers (presymptomatic to stage II), recruited from research registries at participating centers, and 153 nonbiologically related controls, generally spouses or friends. Recruitment was targeted to match a balanced, prespecified spectrum of age, CAG repeat length, and diagnostic status. In the TRACK-HD and Track-On HD studies, 13 and 5 potential participants, respectively, failed study screening. Follow-up ranged from 0 to 6 years. The study dates were January 2008 to November 2014. These analyses were performed between December 2015 and January 2019.
Main Outcomes And Measures:
The outcome measures were principal component summary scores of motor-cognitive function and of brain volumes. The main outcome was the association of these scores with age and CAG repeat length.
Results:
We analyzed 2065 visits from 443 participants (247 female [55.8%]; mean [SD] age, 44.4 [10.3] years). Motor-cognitive measures were highly correlated and had similar CAG repeat length-dependent associations with age. A composite summary score accounted for 67.6% of their combined variance. This score was well approximated by a score combining 3 items (total motor score, Symbol Digit Modalities Test, and Stroop word reading) from the Unified Huntington's Disease Rating Scale. For either score, initial progression age and then acceleration rate were highly CAG repeat length dependent. The acceleration continues through at least stage II disease. In contrast, 3 distinct patterns emerged among brain measures (basal ganglia, gray matter, and a combination of whole-brain, ventricular, and white matter volumes). The basal ganglia pattern showed considerable change in even the youngest participants but demonstrated minimal acceleration of loss with aging. Each clinical and brain summary score was strongly associated with the onset and rate of decline in total functional capacity.
Conclusions And Relevance:
Results of this study suggest that succinct summary measures of function and brain loss characterize HD progression across a wide disease span. CAG repeat length strongly predicts their decline rate. This work aids our understanding of the age and CAG repeat length-dependent association between changes in the brain and clinical manifestations of HD.
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