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February 25, 2026Cell & Bioscience0 citationsOpen Access

NOTCH2NLC GGC repeat expansions cause retinal neurodegeneration in neuronal intranuclear inclusion disease mouse model

HLHui LiYJYing JiangLZLusi Zhang

Key Points

  • This research aims to understand how NOTCH2NLC GGC repeat expansions lead to retinal neurodegeneration.
  • Utilized a transgenic mouse model expressing NOTCH2NLC with 98 GGC repeats.
  • Assessed visual function using visual evoked potentials to evaluate the integrity of the visual pathway.
  • Conducted transcriptomic profiling to investigate alterations in antioxidant pathways.
  • Administered a mitochondrial-targeted antioxidant, Mito-TEMPO, to evaluate its protective effects.
  • Observed retinal thinning and neurodegeneration, particularly in inner retinal layers.
  • Visual evoked potentials showed significantly reduced amplitudes and prolonged latencies in NIID mice.
  • Transcriptomic profiling indicated dysregulation of glutathione redox homeostasis.
  • Mito-TEMPO treatment significantly reduced retinal damage and improved visual function.

Abstract

Neuronal intranuclear inclusion disease (NIID) patients frequently exhibit ocular abnormalities, yet the pathogenic mechanisms remain unclear. Using a transgenic mouse model ubiquitously expressing NOTCH2NLC with 98GGC repeats, we revealed that polyglycine aggregates, translated from the expanded GGC repeats, predominantly localize in PAX6- and RBPMS-positive cells, accompanied by retinal neurodegeneration and thinning especially in the inner retinal layers. Functional assessment through visual evoked potentials demonstrated significantly reduced amplitudes and prolonged latencies in NIID mice, indicating compromised visual pathway integrity. Transcriptomic profiling revealed dysregulation of glutathione redox homeostasis and antioxidant pathways in the NIID retina. We further demonstrated that GGC expansions induce mitochondrial abnormalities accompanied by glutathione depletion and accumulation of reactive oxygen species. Crucially, intravitreal administration of the mitochondrial-targeted antioxidant Mito-TEMPO significantly alleviated retinal damage and improved visual function. Our findings establish NOTCH2NLC GGC expansions as direct drivers of retinal pathology through mitochondrial-oxidative damage, while identifying antioxidant therapy as a promising treatment strategy for NIID-associated retinopathy.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/699e920af5123be5ed04ff6bhttps://doi.org/10.1186/s13578-026-01542-x
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Neuronal intranuclear hyaline inclusion disease2003 · 171 citations
  2. 2Altered Redox Mitochondrial Biology in the Neurodegenerative Disorder Fragile X-Tremor/Ataxia Syndrome: Use of Antioxidants in Precision Medicine2016 · 69 citations
  3. 3Chx10 is required to block photoreceptor differentiation but is dispensable for progenitor proliferation in the postnatal retina2006 · 116 citations
  4. 4Pathologically high intraocular pressure induces mitochondrial dysfunction through Drp1 and leads to retinal ganglion cell PANoptosis in glaucoma2023 · 162 citations
  5. 5Expression of expanded GGC repeats within NOTCH2NLC causes cardiac dysfunction in mouse models2023 · 10 citations