GEO series
Chromatin Organization Governs Transcriptional Response and Plasticity of Cancer Stem Cells [RNA]
GSE268060
Homo sapiens
Expression profiling by high throughput sequencing
27 samples
2025/03/18
GPL20301
Summary
The organization of chromatin, governed by physicochemical interactions, nucleosome positioning, and histone modifications, regulates transcription to influence cellular plasticity and cell fate. We explored whether the organization of chromatin into nanoscale packing domains is involved in regulating transcriptional programs that govern stemness and responses to chemotherapy. Specifically, chromatin packing domains are a unit of chromatin structure at the single-cell level playing a critical role in regulating cellular transcriptional plasticity and access to the transcriptional landscape. Using an optical spectroscopic nanosensing technology, partial wave spectroscopic (PWS) microscopy, we show that ovarian cancer-derived cancer stem cells (CSCs) display upregulation of nanoscale chromatin packing domains (P<0.05) compared to non-CSCs cells. CUT&Tag sequencing with antibodies for repressive H3K27me3 and active H3K4me3 and H3K27ac marks identified 4438 H3K27me3 differentially enriched regions (P<0.05), of which 2786 were detected in CSCs, supporting chromatin packing domain upregulation in ovarian CSCs. Additionally, more poised genes with both H3K4me3 and H3K27me3 marks were identified in CSCs (n=2292) vs. non-CSCs (n=932), supporting the increased transcriptional plasticity of CSCs. Corresponding to the distinct organization of chromatin marks in CSCs, comparative transcriptomic analyses yielded a higher intercellular transcriptional heterogeneity in global gene expression at baseline in CSCs vs. non-CSCs. In response to cisplatin, genes with low baseline expression levels underwent the highest upregulation in CSCs, demonstrating transcriptional plasticity under the stress of chemotherapy. Treatment of CSCs with epigenome targeting drugs downregulating chromatin packing domain formation promoted cellular differentiation. In particular, the Dot1L inhibitor (Dot1Li) downregulated chromatin domains and blocked transcriptional plasticity. This resulted in the reversal of stemness features and inhibition of tumor initiation capacity. The results support that CSCs harbor upregulated chromatin packing domains, contributing to transcriptional and cell plasticity that epigenome modifiers can target.
Download
NCBI GEO page ↗
Paper (PMID 40051293) ↗
{# 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 RNA-seq datasets →
Similar datasets
- GSE328275 Single-cell RNA sequencing of CD45+ immune cells across primary tumor, sentinel tumor-draining lymph node, and axillary lymph node in treatment-naive triple-negative breast cancer 28 samples
- GSE341753 Cohesin loading at regulatory elements shapes 3D genome folding during erythropoiesis [RNA-Seq] 12 samples
- GSE319969 Spatial and Bulk Transcriptomic Profiling Defines the Molecular Evolution of Cutaneous Squamous Cell Carcinoma and Reveals Stage-Specific Biomarkers of Clinical Relevance [RNA-Seq] 24 samples
- GSE342462 Integrated transcriptomic and bioelectrical profiling of stem-like cellular states in a colorectal cancer using SdFFF and UHF-DEP 12 samples
- GSE313035 METIMMOX: Colorectal Cancer METastasis - Shaping Anti-tumor IMMunity by OXaliplatin 67 samples
- GSE339456 Integrated bulk and spatial transcriptomic analysis identifies progression-associated molecular signatures in biopsy-proven hypertensive nephropathy [RNA-seq] 35 samples
- GSE341139 A conserved HAND2-BMP5-SMAD1/5/9 axis drives hepatic stellate cell activation and extracellular matrix overproduction in multiple fibrotic etiologies 10 samples
- GSE274275 Effect of depletion of NSUN4 on gene expression of NCI-H226 cells [RNA-seq] 6 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.