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Lowering mutant huntingtin by small molecules relieves Huntington's disease symptoms and progression. | LitMetric

AI Article Synopsis

  • * Researchers identified small molecule inhibitors, SPI-24 and SPI-77, which effectively reduce levels of the mutant huntingtin protein in HD cells and improve symptoms in a mouse model by enhancing mitochondrial function and restoring brain-derived neurotrophic factor (BDNF) expression.
  • * Long-term administration of SPI-24 showed no side effects and successfully delayed the progression of HD, suggesting that targeting mutant huntingtin levels is a promising treatment strategy for this condition.

Article Abstract

Huntington's disease (HD) is an incurable inherited disorder caused by a repeated expansion of glutamines in the huntingtin gene (Htt). The mutant protein causes neuronal degeneration leading to severe motor and psychological symptoms. Selective downregulation of the mutant Htt gene expression is considered the most promising therapeutic approach for HD. We report the identification of small molecule inhibitors of Spt5-Pol II, SPI-24 and SPI-77, which selectively lower mutant Htt mRNA and protein levels in HD cells. In the BACHD mouse model, their direct delivery to the striatum diminished mutant Htt levels, ameliorated mitochondrial dysfunction, restored BDNF expression, and improved motor and anxiety-like phenotypes. Pharmacokinetic studies revealed that these SPIs pass the blood-brain-barrier. Prolonged subcutaneous injection or oral administration to early-stage mice significantly delayed disease deterioration. SPI-24 long-term treatment had no side effects or global changes in gene expression. Thus, lowering mutant Htt levels by small molecules can be an effective therapeutic strategy for HD.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10940305PMC
http://dx.doi.org/10.1038/s44321-023-00020-yDOI Listing

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