Multi-omic analysis of the ciliogenic transcription factor RFX3 reveals a role in promoting activity-dependent responses via enhancing CREB binding in human neurons
Lai, J.; Demirbas, D.; Phillips, K.; Zhao, B.; Wallace, H.; Seferian, M.; Nakayama, T.; Harris, H.; Chatzipli, A.; Lee, E. A.; Yu, T. W.
Show abstract
Heterozygous loss-of-function (LoF) variants in RFX3, a transcription factor known to play key roles in ciliogenesis, result in autism spectrum disorder (ASD) and neurodevelopmental delay. RFX binding motifs are also enriched upstream of genes found to be commonly dysregulated in transcriptomic analyses of brain tissue from individuals with idiopathic ASD. Still, the precise functions of RFX3 in the human brain is unknown. Here, we studied the impact of RFX3 deficiency using human iPSC-derived neurons and forebrain organoids. Biallelic loss of RFX3 disrupted ciliary gene expression and delayed neuronal differentiation, while monoallelic loss of RFX3 did not. Instead, transcriptomic and DNA binding analyses demonstrated that monoallelic RFX3 loss disrupted synaptic target gene expression and diminished neuronal activity-dependent gene expression. RFX3 binding sites co-localized with CREB binding sites near activity-dependent genes, and RFX3 deficiency led to decreased CREB binding and impaired induction of CREB targets in response to neuronal depolarization. This study demonstrates a novel role of the ASD-associated gene RFX3 in shaping neuronal synaptic development and plasticity.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Neuronal identity is maintained in the adult brain through KAT3-dependent enhancer acetylation 97%
- Cell-type, single-cell, and spatial signatures of brain-region specific splicing in postnatal development 97%
- ZMYND11 Functions in Bimodal Regulation of Latent Genes and Brain-like Splicing to Safeguard Corticogenesis 97%
Similar papers in this journal
- CTNND2 regulation by the SRGAP2 protein family links human evolution to synaptic neoteny 98%
- Histone variant H2BE controls activity-dependent gene expression and homeostatic scaling 97%
- Epigenetically bistable regions across neuron-specific genes govern neuron eligibility to a coding ensemble in the hippocampus 96%
Similar papers in this journal
- Integrated single-cell transcriptomic and epigenetic analyses of cell-state transition and lineage commitment in the embryonic mouse cerebellum 96%
- Chronic exposure to glucocorticoids amplifies inhibitory neuron cell fate during human neurodevelopment in organoids 96%
- L1 retrotransposons drive human neuronal transcriptome complexity and functional diversification 96%
Similar papers in this journal
- Reorganization of postmitotic neuronal chromatin accessibility for maturation of serotonergic identity 96%
- Directed differentiation of functional corticospinal-like neurons from endogenous SOX6+/NG2+ cortical progenitors 96%
- MicroRNA-eQTLs in the developing human neocortex link miR-4707-3p expression to brain size 96%
Similar papers in this journal
- Dynamic subtype- and context-specific subcellular RNA regulation in growth cones of developing neurons of the cerebral cortex 97%
- Genome-wide CRISPRi/a screens in human neurons link lysosomal failure to ferroptosis 96%
- FOXP Genes Regulate Purkinje Cell Diversity in Cerebellar Development and Evolution 96%
"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.