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◆ Neurobiology of disease2026-08-24

Splicing modulation of ATXN2 as a therapeutic strategy to regulate Ataxin-2 protein levels in ALS.

Nicolette Heinsinger, Yi Wang, Steve Grauer, Zuo Zhang, Jacky Wong, Vladimir Simov, Marina Bukhtiyarova, Xi Ai, Craig Parish, Rebecca Meier Klein, Jason Uslaner, Sean Smith, Yuan Tian

原始摘要(英文原文)· Original abstract
ATXN2 is associated with an increased risk of Amyotrophic Lateral Sclerosis (ALS), while down-regulation of ATXN2 has been shown to mitigate TDP-43 proteinopathy in ALS models. In this study, we demonstrated that Ataxin-2 protein levels were upregulated in rNLS8 mice following doxycycline withdrawal, which coincided with TDP-43 overexpression, phosphorylation, and aggregation. To reduce Ataxin-2 protein levels, we explored the approach of splicing modulation at the RNA level. Through bioinformatical analysis, we identified an alternative 5' splicing site of ATXN2 in intron 8. This alternative splicing results in an additional 47 base pairs at the 3' end after Exon 8. The insertion of the extra nucleotides causes a frameshift that leads to reduced mRNA production and, consequently, protein levels. Following the discovery of this alternative splicing site, we conducted an antisense oligonucleotide (ASO) micro-walk to screen ASOs targeting this region. We identified ASOs that specifically modulate this splicing, including those that either enhance or inhibit alternative splicing. We validated that the ASOs that promote alternative splicing and reduce constitutive splicing can lower Ataxin-2 protein levels, which in turn decreases TDP-43 aggregation and stress granule formation in a cell-based model of TDP-43 toxicity. Furthermore, we confirmed that reducing Ataxin-2 levels via previously validated ASO delivery ameliorated TDP-43 pathology in rNLS8 mice. The discovery of ATXN2 alternative splicing, along with the confirmation of splicing modulation using ASOs in human cell-based assays, provides evidence for a proof-of-principle strategy to modulate Ataxin-2 protein levels for the treatment of ALS.
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Splicing modulation of ATXN2 as a therapeutic strategy to regulate Ataxin-2 protein levels in ALS. — 科研速览 Science Skim