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.