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Epigenetic regulation of cell state by H2AFY governs immunogenicity in high-risk neuroblastoma [CUT&RUN]

GSE270196 Mus musculus Genome binding/occupancy profiling by high throughput sequencing 8 samples Submitted 2024/06/25 Platform GPL34290
Summary
Childhood neuroblastoma with MYCN-amplification is classified as high-risk and often relapses after intensive treatment regimen. Immune checkpoint blockade therapy shows limited efficacy in neuroblastoma patients and the cancer intrinsic immune regulatory network is poorly understood. Here, we leveraged genome-wide CRISPR/Cas9 screens in a human co-culture system and identified H2AFY as a resistance gene to nivolumab. Genetic deletion of H2afy in MYCN-driven neuroblastoma cells reverted in vivo resistance to PD-1 blockade by eliciting concurrent activation of the adaptive and innate immunity. Analysis of single-cell RNA sequencing datasets revealed that H2AFY mRNA was enriched in adrenergic cancer cells and was associated with patient survival. Mapping of the epigenetic and translational landscape demonstrated that H2afy deletion promoted cell transition to a malignant mesenchymal-like state. With a multi-omics approach, we uncovered H2AFY-associated genes that were functionally relevant and prognostic in patients. Altogether, our study elucidates the role of H2AFY as an epigenetic gatekeeper for cell state and immunogenicity in high-risk human neuroblastoma.
Published in
Epigenetic regulation of cell state by H2AFY governs immunogenicity in high-risk neuroblastoma
Nagarajan D, Parracho RT, Corujo D et al. · The Journal of clinical investigation 2024 · PMID 39255035 · doi:10.1172/JCI175310
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Also filed as BioProject PRJNA1125401 and SRA study SRP514776. Searching any of these in the dataset finder brings you back here.

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