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Shielding Retinal Ganglion Cells: Suppression of the PAX6-JNK3 Axis Protects Against NMDA-Induced Excitotoxicity in a Glaucoma Model [ChIP-seq]

GSE275655 Mus musculus Genome binding/occupancy profiling by high throughput sequencing 8 samples Submitted 2026/02/11 Platform GPL19057
Summary
Retinal degenerative diseases frequently cause visual impairment due to a lack of regeneration systems and self-renewable cells. Glaucoma is characterized by the progressive degeneration of retinal ganglion cells (RGCs), yet the underlying mechanisms remain poorly understood. Here, our study investigated the role of the transcription factor PAX6 in RGC death during NMDA excitotoxicity, a model for glaucoma. Using public single-cell RNA sequencing data, we found that PAX6 is consistently expressed in RGCs across both mouse and human retinas. Notably, we demonstrated that PAX6 phosphorylation was enhanced following NMDA exposure, and JNK3 was identified as a key kinase responsible for PAX6 phosphorylation. Epigenome-wide analysis revealed co-occupancy of PAX6 and JNK3 at key apoptotic gene promoters, with PAX6 acting as a recruitment factor for JNK3. Furthermore, suppressing PAX6 and JNK3 significantly protected against NMDA-induced RGC death, highlighting PAX6-JNK3 contribution to excitotoxicity-mediated apoptosis. Collectively, our findings elucidate a novel mechanism of RGC death in glaucoma, implicating the PAX6-JNK3 signaling axis as a critical mediator of retinal cell fate under excitotoxic conditions, suggesting potential therapeutic targets for preserving RGCs in glaucoma.
Published in
Aberrant maintenance of developmental transcription factor PAX6 promotes neuronal cell death via JNK3 signaling
Kim JY, An MJ, Kim J et al. · Cell death & disease 2026 · PMID 41611657 · doi:10.1038/s41419-026-08417-6
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Also filed as BioProject PRJNA1152507 and SRA study SRP528620. Searching any of these in the dataset finder brings you back here.

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