GEO series
ZMYND11 Functions in Bimodal Regulation of Latent Genes and Brain-like Splicing to Safeguard Corticogenesis [CUT&RUN]
GSE279068
Homo sapiens
Genome binding/occupancy profiling by high throughput sequencing
19 samples
2025/08/21
GPL34284
Summary
While the identification of pathogenic variants linked to neurodevelopmental (NDD) and autism spectrum disorders (ASD) has advanced rapidly, the mechanisms underlying these genetic risks remain unclear. Here, we leveraged a human pluripotent stem cell model to uncover the neurodevelopmental consequences of mutations in ZMYND11, a newly implicated risk gene. ZMYND11, known for its tumor suppressor function, encodes a histone-reader that recognizes sites of transcriptional elongation and acts as a co-repressor. Our findings reveal that ZMYND11 deficient cortical neural stem cells exhibit upregulation expression of latent developmental pathways, leading to impaired production of secondary neural progenitors and neurons. In addition to its chromatin-related functions, we found ZMYND11 orchestrates a brain specific isoform switch that affects migration and proliferation of cortical neural stem cells. We further demonstrated that brain specificity is likely to involve the activity of the splicing regulator RBFOX2. Finally, we extended our findings to 10 additional lines with different chromatin-related NDD/ASD risk factors and identified a subset displaying similar activation of developmental pathways and splicing dysregulation, which could partially be rescued by leveraging the transcriptional repression and splicing coordination of ZMYND11. Collectively, our work highlights the critical role of ZMYND11 in regulating developmental signals and alternative splicing, offering novel insights into the molecular pathology of ZMYND11-associated NDDs. Moreover, these findings suggest broader convergence with other genetic risk factors for NDD/ASD, presenting potential therapeutic avenues for intervention.
Download
NCBI GEO page ↗
Paper (PMID 41068108) ↗
{# Names what the click gives you. "Open in finder" meant nothing to a
visitor who arrived from a search engine and has never seen the tool. #}
Find more
human ChIP / ATAC / CUT&Tag datasets →
Similar datasets
- GSE316079 SLF2 and SMC5 dysfunction drives HSC aging and predisposes to MDS, defining a new inherited bone marrow failure syndrome [ATAC-seq] 6 samples
- GSE334112 Reversible epiblast regionalisation determines differentiation potential of human PSCs [ATAC-seq] 38 samples
- GSE329512 SUMOylation enhances DNMT1 function to repress mega-intergenic RNAs and viral mimicry 19 samples
- GSE318107 CAD-C: An engineered nuclease enables repair-free in situ proximity ligation and nucleosome-resolution chromosome walks in human cells [Cut & Tag] 10 samples
- GSE316989 Targeting CDK12/CYCLIN K induces a gene activation program which is mediated by P-TEFb [Cut&RUN] 10 samples
- GSE142751 Genome-wide maps of chromatin state in 142 cancer cell lines [cell line] 855 samples
- GSE327821 Single-molecule, single-cell profiling of linked chromatin states [Single_cell_CoCUT&Tag] 200 samples
- GSE339365 Genome-wide H3K4me3 profiling of circulating immune cells reveals dynamic epigenetic reprogramming during acute critical COVID-19 120 samples
Share this dataset
Metadata from NCBI GEO, cached and refreshed periodically — the NCBI page above is authoritative. Downloads link straight to NCBI/ENA; nothing is proxied through BioTransfer.