ArticleCell communication and signaling : CCS2025
uN2CpolyG-mediated p65 nuclear sequestration suppresses the NF-κB-NLRP3 pathway in neuronal intranuclear inclusion disease.
Article in Cell communication and signaling : CCS, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 6 papers.
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Who cites it
6 citing papers in PubMed.
- A Second Pathogenic Protein, PolyGN2C-iso2, Reveals a Dual-Protein Pathology in Neuronal Intranuclear Inclusion Disease.Advanced science (Weinheim, Baden-Wurttemberg, Germany) · 2026Article
- PolyG Fibrils Coalesce Into Nuclear Ribbons That Engage Proteostasis Machinery in Neuronal Intranuclear Inclusion Disease.Advanced science (Weinheim, Baden-Wurttemberg, Germany) · 2026Article
- Helicobacter pylori activates the TRAF1/OASL/ZBP1-PANoptosome pathway to induce PANoptosis in the gastric mucosa.Apoptosis : an international journal on programmed cell death · 2026Article
- Immunological characterization of neuronal intranuclear inclusion disease with kidney injury: an exploratory analysis in a multi-center cohort.Frontiers in immunology · 2026Observational
- Modeling neuronal intranuclear inclusion disease: A review of animal and human-derived cellular models and mechanistic insights.Zoological research · 2025Review
- Inflammation in Neuronal Intranuclear Inclusion Disease (NIID): mechanisms, biomarkers, and therapeutic implications.Journal of neuroinflammation · 2025Review
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Authors and funding
11 authors.
Funding
Abstract
backgroundNeuronal intranuclear inclusion disease (NIID) is genetically linked to CGG repeat expansion in the 5'-untranslated region of the NOTCH2NLC gene, with nascent polyglycine-containing protein (uN2CpolyG) identified as a primary pathogenic factor. Emerging clinical evidence suggests that inflammation contributes to NIID pathogenesis, yet the underlying molecular mechanisms remain elusive. This study aimed to elucidate the molecular interaction between uN2CpolyG and the NF-κB-NLRP3 pathway.
methodsSingle-cell RNA sequencing was conducted on the skin tissues of NIID patients to assess changes in the expression of genes involved in inflammatory pathways. Cell models (HEK-293T and U87-MG) transfected with CGG
resultsSingle-cell sequencing revealed a significant reduction in the expression of NFKBIA, encoding NF-κB inhibitor alpha (IkBa), which facilitates the nuclear translocation of p65, a key NF-κB component. uN2CpolyG directly interacted with and sequestered p65 in nuclear inclusions, leading to reduced phosphorylated p65 (p-p65) levels. This sequestration significantly downregulated the NF-κB-NLRP3 pathway, impairing autophagy, as indicated by decreased LC3II/LC3I ratios. Treatment of CGG
conclusionsThis study revealed that uN2CpolyG directly interacts with and sequesters p65, thereby inhibiting the NF-κB-NLRP3 pathway and impairing autophagy. This mechanism highlights a novel therapeutic target for NIID and provides potentially broader insights into similar mechanisms in other neurodegenerative diseases characterized by misfolded protein aggregates.
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