SOX2-VSX2 Co-Occupancy Shapes Retinal Neurogenesis Through Dynamic Chromatin Regulation
Bian, F.; Golestaneh, K.; Davis, E.; Khan, A.; Daghsni, M.; Flohr, K.; Liu, S.; da Silva, S.; Pennacchio, L.; Al Diri, I.
Show abstract
Retinal neurogenesis is mediated by the coordinated activities of a complex gene regulatory network (GRN) of transcription factors (TFs) in multipotent retinal progenitor cells (RPCs). How this GRN mechanistically guides neural competence remains poorly understood. In this study, we present integrated transcriptional, genetic, and genomic analyses to uncover the regulatory mechanisms of SOX2, a key factor in establishing neural identity in RPCs. We show that SOX2 is preferentially enriched in the RPC-specific enhancer landscape associated with essential regulators of retinogenesis. Disruption of SOX2 expression impairs retinogenesis, marked by a selective loss of enhancer activity near genes essential for RPC proliferation and lineage specification. We identified the RPC transcription factor VSX2 as a binding partner for SOX2, and together, SOX2 and VSX2 co-target a core, retina-specific chromatin repertoire characterized by enhanced TF binding and robust chromatin accessibility. This cooperative binding establishes a shared SOX2-VSX2 transcriptional code that promotes the expression of critical regulators of neurogenesis while repressing the acquisition of alternative lineage cell fate. Our data illuminate fundamental biological insights on how transcription factors act in concert to drive chromatin-based genetic programs underlying retinal neural identity.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Single-cell profiling of trabecular meshwork identifies mitochondrial dysfunction in a glaucoma model that is protected by vitamin B3 treatment 96%
- Primary cilia deficiency in neural crest cells causes Anterior Segment Dysgenesis 95%
- Heterochronic transcription factor expression drives cone-dominant retina development in 13-lined ground squirrels. 95%
Similar papers in this journal
- TFAP2 paralogs facilitate chromatin access for MITF at pigmentation genes but inhibit expression of cell-cell adhesion genes independently of MITF 94%
- The nanophthalmos protein TMEM98 inhibits MYRF self-cleavage and is required for eye size specification 94%
- Genomic features underlie the co-option of SVA transposons as cis-regulatory elements in human pluripotent stem cells 94%
Similar papers in this journal
- Active DNA demethylation is upstream of rod-photoreceptor fate determination and required for retinal development 94%
- Sox5 controls the establishment of quiescence in neural stem cells during postnatal development 93%
- Single-cell RNA sequencing of adult Drosophila ovaryidentifies transcriptional programs governing oogenesis 93%
Similar papers in this journal
- Amnion signals are essential for mesoderm formation in primates 94%
- Histone H3.3 lysine 9 and 27 control repressive chromatin states at cryptic cis-regulatory elements and bivalent promoters in mouse embryonic stem cells 94%
- Non-canonical nuclear function of glutaminase cooperates with Wnt signaling to drive EMT during neural crest development 94%
Similar papers in this journal
- Chd4 remodels chromatin to control retinal cell type specification and lineage termination 97%
- Ikaros family proteins regulate developmental windows in the mouse retina through convergent and divergent transcriptional programs 95%
- Fat1 regulates astrocyte maturation and angiogenesis in the retina 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.