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Oligodendrocyte subtype imbalance and dysfunction contribute to motor deficits and Purkinje cell axonopathy in SCA1

GSE319510 Mus musculus Expression profiling by high throughput sequencing 8 samples Submitted 2026/03/26 Platform GPL24247
Summary
Spinocerebellar ataxia type 1 (SCA1) is a neurodegenerative disease marked by progressive motor deficits and Purkinje cell (PC) degeneration, driven by polyglutamine expansion in ataxin-1. While oligodendroglial dysfunction precedes PC loss, its direct contribution toward SCA1 pathogenesis remains unclear. Here, using an oligodendroglia-specific SCA1 conditional knock-in mouse model, we demonstrate that mutant ataxin-1 in oligodendrocytes is sufficient to drive aspects of SCA1-related pathology, including dysregulated myelination, PC axonal shrinkage, and torpedo formation, ultimately impairing motor coordination. Cross-species single-nucleus RNA-sequencing reveals cerebellar oligodendrocyte subtypes with distinct gene expression and abundance dysregulation that contribute to demyelination. This, compounded by a progressive decline in the neuroprotective functions of a cerebellar-specific oligodendrocyte subtype, establishes a critical link between demyelination, axo-myelinic dysfunction, and axonal pathology in SCA1. Upstream transcriptional regulator analysis in oligodendroglia identifies TCF7L2 and HTT as key mediators of oligodendroglial dysfunction in SCA1, suggesting shared pathogenic mechanisms with other polyglutamine diseases. These findings position oligodendroglia as central players in SCA1 pathogenesis and underscore their essential role in supporting PC of axonal integrity.
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Direct links to NCBI, no account and no request form: the whole study as GSE319510_RAW.tar, processed values as the series matrix, the supplementary file directory, and per-sample supplementary files for any of the 8 samples. Raw sequencing reads are also available from ENA.

Also filed as BioProject PRJNA1423641 and SRA study SRP677055. Searching any of these in the dataset finder brings you back here.

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