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Updated: Oct 13, 2025

Fractionation for Resolution of Soluble and Insoluble Huntingtin Species
Published on: February 27, 2018
[Disease-modifying treatment approaches in Huntington disease : Past and future]
Wiebke Frank1, Katrin S Lindenberg1, Alzbeta Mühlbäck1,2,3
1Klinik für Neurologie, Universität Ulm, Oberer Eselsberg 45/1, 89081, Ulm, Deutschland.
Insights
Huntington disease (HD) is a genetic neurodegenerative disorder. Research focuses on early intervention by targeting the huntingtin gene (HTT) mRNA to reduce mutant protein production and slow disease progression.
Area of Science:
- Neurogenetics
- Neurodegenerative Diseases
- Molecular Medicine
Background:
- Huntington disease (HD) is the most common monogenetic neurodegenerative disorder.
- Early diagnosis is possible via CAG expansion mutation in the huntingtin gene (HTT).
- HD serves as a model for exploring neuroprotective strategies.
Purpose of the Study:
- To review current therapeutic research for Huntington disease.
- To highlight the shift towards intervening early in the disease's pathophysiological cascade.
- To discuss novel treatment modalities targeting HTT mRNA and CAG repeat length.
Main Methods:
- Review of therapeutic strategies for Huntington disease.
- Focus on interventions targeting the huntingtin gene (HTT) mRNA.
- Exploration of methods to modify the somatically unstable CAG mutation.
Main Results:
- Various treatment modalities targeting HTT mRNA are in clinical trials (phases I-III) or preclinical development.
- These include single-stranded DNA/RNA, RNA repressor complexes, and splice modulators.
- Modifying CAG mutation length is also being explored as a therapeutic avenue.
Conclusions:
- Early intervention in Huntington disease is feasible due to early diagnostic capabilities.
- Targeting HTT mRNA to reduce mutant huntingtin production is a key therapeutic strategy.
- Novel approaches offer promise for slowing Huntington disease progression.
Abstract:
Huntington disease (HD) is the most frequent monogenetic neurodegenerative disease and can be unequivocally diagnosed even in the preclinical stage, at least in all individuals in whom the CAG expansion mutation in the huntingtin gene (HTT) is in the range of full penetrance. Therefore, important preconditions for an intervention early in the disease process are met, rendering modification of the course of the disease in a clinically meaningful way possible. In this respect, HD can be viewed as a model disorder for exploring neuroprotective treatment approaches. In the past emphasis was placed on the compensation of a suspected neurotransmitter deficit (GABA) analogous to Parkinson's disease and on classical neuroprotective strategies to influence hypothetical common pathways in neurodegenerative diseases (e.g., excitotoxicity, mitochondrial dysfunction, oxidative stress). With the discovery of the causative HTT mutation in 1993, therapeutic research increasingly focused on intervening as proximally as possible in the chain of pathophysiological events. Currently, an important point of intervention is the HTT mRNA with the aim of reducing the continued production of mutant huntingtin gene products and thus relieving the body of their detrimental actions. To this end, various treatment modalities (single-stranded DNA and RNA, divalent RNA and zinc finger repressor complexes, orally available splice modulators) were developed and are currently in clinical trials (phases I-III) or in late stages of preclinical development. In addition, there is the notion that it may be possible to modify the length of the somatically unstable CAG mutation, i.e. its increase in the brain during the lifetime, thereby slowing the progression of HD.
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