Expression of expanded GGC repeats within <i>NOTCH2NLC</i> causes behavioral deficits and neurodegeneration in a mouse model of neuronal intranuclear inclusion disease.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 36417528.
- Also identified by DOI 10.1126/sciadv.add6391 and PMC identifier 9683706.
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Abstract
GGC repeat expansions within <i>NOTCH2NLC</i> have been identified as the genetic cause of neuronal intranuclear inclusion disease (NIID). To understand the molecular pathogenesis of NIID, here, we established both a transgenic mouse model and a human neural progenitor cells (hNPCs) model. Expression of the <i>NOTCH2NLC</i> with expanded GGC repeats produced widespread intranuclear and perinuclear polyglycine (polyG), polyalanine (polyA), and polyarginine (polyR) inclusions, leading to behavioral deficits and severe neurodegeneration, which faithfully mimicked the clinical and pathological features associated with NIID. Furthermore, conserved alternative splicing events were identified between the NIID mouse and hNPC models, among which was the enrichment of the binding motifs of hnRNPM, an RNA binding protein known as alternative splicing regulator. Expanded NOTCH2NLC-polyG and NOTCH2NLC-polyA could interact with and sequester hnRNPM, while overexpression of hnRNPM could ameliorate the cellular toxicity. These results together suggested that dysfunction of hnRNPM could play an important role in the molecular pathogenesis of NIID.
Medical subject headings
- Intranuclear Inclusion Bodies
- Neurodegenerative Diseases