Related Experiment Video
Updated: Jun 13, 2026

Fractionation for Resolution of Soluble and Insoluble Huntingtin Species
Published on: February 27, 2018
Lowering the HTT1a transcript as an effective therapy for Huntington's disease in a knockin mouse model
Aikaterini Smaragdi Papadopoulou1, Julia Alterman2, Christian Landles1
1Huntington's Disease Centre and Department of Neurodegenerative Disease, Queen Square Institute of Neurology, UCL, London WC1N 3BG, UK.
Insights
Targeting the HTT1a transcript, not just full-length huntingtin (HTT), is more effective for Huntington's disease (HD) therapy. This approach delays protein aggregation and transcriptional issues, supporting HTT1a-specific lowering strategies.
Area of Science:
- Neuroscience
- Genetics
- Molecular Biology
Background:
- Huntington's disease (HD) is caused by a CAG repeat expansion in the huntingtin (HTT) gene.
- Somatic expansion of this CAG repeat influences disease onset and progression.
- Increased CAG repeats lead to alternative splicing, generating the pathogenic HTT1a transcript and protein.
Purpose of the Study:
- To compare the efficacy of lowering full-length huntingtin (HTT) versus the HTT1a transcript in mouse models of HD.
- To evaluate siRNA strategies targeting either HTT or HTT1a for therapeutic potential.
Main Methods:
- Development of siRNAs targeting mouse Htt1a (634/486) and Htt (10150).
- Treatment of zQ175 (HD model) and wild-type mice with siRNAs at different ages.
- Assessment of siRNA efficacy, potency, and durability, particularly in the hippocampus.
Main Results:
- Both HTT-lowering strategies demonstrated therapeutic benefits in HD mouse models.
- Targeting HTT1a was more effective than targeting full-length HTT in reducing HTT aggregation and transcriptional dysregulation.
- siRNA potency and durability were most pronounced in the hippocampus.
Conclusions:
- HTT-lowering strategies targeting the HTT1a transcript show greater efficacy in mitigating HD pathology.
- These findings support the development of therapies focused on HTT1a, alone or in combination with full-length HTT lowering.
Abstract:
Lowering huntingtin (HTT) transcript levels has been a major focus of therapeutic development for Huntington's disease (HD), but which transcript should be lowered? HD is caused by a CAG repeat expansion in exon 1 of the HTT gene, and the rate of somatic expansion of this CAG repeat throughout life drives the age of onset and rate of disease progression. As the CAG repeat expands, the extent to which the HTT mRNA is alternatively processed to generate the HTT1a transcript and highly aggregation-prone and pathogenic HTT1a protein increases. Several HTT-lowering modalities have entered clinical trials that target either both HTT and HTT1a together or full-length HTT alone. We have developed siRNAs that target the Htt1a mouse transcript (634/486) and used these, together with a potent Htt-targeting siRNA (10150), to compare the efficacy of lowering either full-length Htt or Htt1a. zQ175 and wild-type mice were treated with 10150 or 634/486 alongside control groups at 2 months of age and euthanized at 6 months, at 2 months and again at 6 months and euthanized at 10 months, or at 6 months and euthanized at 10 months. The siRNA potency and durability were most effective in the hippocampus. Although both strategies showed benefits, despite the greater potency of 10150, targeting Htt1a was more effective at delaying HTT aggregation and transcriptional dysregulation than targeting full-length Htt. These data support HTT-lowering strategies that are designed to target the HTT1a transcript, either alone or together with lowering full-length HTT.
More Related Videos
08:27Single Synapse Indicators of Glutamate Release and Uptake in Acute Brain Slices from Normal and Huntington Mice
Published on: March 11, 2020
10:52Efficient and Scalable Production of Full-length Human Huntingtin Variants in Mammalian Cells using a Transient Expression System
Published on: December 10, 2021
Related Concept Videos
Experimental RNAi
Huntington Disease l: Introduction