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Series GSE240343 Query DataSets for GSE240343
Status Public on May 07, 2024
Title STAG2 mutations and 3D genome organization, chromatin loops, and polycomb signaling in glioblastoma multiforme
Organism Homo sapiens
Experiment type Other
Expression profiling by high throughput sequencing
Summary Inactivating mutations of genes encoding the cohesin complex are common in a wide range of human cancers. STAG2 is the most commonly mutated subunit. Here we report the impact of stable correction of endogenous, naturally occurring STAG2 mutations on gene expression, 3D genome organization, chromatin loops, and Polycomb signaling in glioblastoma multiforme. Correction of mutant STAG2 significantly altered the expression of ~10% of all expressed genes. The genes most highly regulated by STAG2 (e.g. FGF7, c-KIT, MAGE tumor antigens) were virtually all upregulated in STAG2-mutant cells. Hi-C revealed that ~3% of A/B compartments switched after STAG2 correction, and confirmed prior findings that STAG2 is dispensable for maintenance of Topologically Associating Domains (TADs). The size and strength of thousands of chromatin loops were altered by STAG2 correction, a subset of which controlled the expression of adjacent genes. Loops specific to STAG2-mutant cells and tumors were very large, supporting prior findings that STAG1-containing cohesin complexes have greater loop extrusion processivity than STAG2-containing cohesin complexes, and suggesting that long loops may be a generalizable feature of STAG2-mutant cancers. Finally, STAG2-regulated chromatin loops were enriched for the H3K27me3 Polycomb epigenetic mark, revealing that inactivation of STAG2 can activate Polycomb signaling in GBM. Together these findings illuminate the landscape of STAG2-regulated genes, A/B compartments, chromatin loops, and pathways in GBM, providing important clues into the still mysterious mechanism of STAG2 tumor suppression in human cancer.
 
Overall design Hi-C of 4 cell lines
RNA-seq of 4 cell lines
 
Contributor(s) Xu W, Kim J, Yang T, Sadzewicz L, Tallon L, Sarkaria J, Jin F, Waldman T
Citation(s) 38705393
Submission date Aug 08, 2023
Last update date May 07, 2024
Contact name Wanying Xu
E-mail(s) xww@case.edu
Phone 2165029897
Organization name Case Western Reserve University
Department Department of Genome and Genetics
Lab Jin lab
Street address 10900 Euclid Avenue
City Cleveland
State/province OH
ZIP/Postal code 44106
Country USA
 
Platforms (1)
GPL24676 Illumina NovaSeq 6000 (Homo sapiens)
Samples (20)
GSM7696517 H4 parental replicate 1
GSM7696518 H4 parental replicate 2
GSM7696519 H4 88-1 replicate 1
Relations
BioProject PRJNA1003411

Download family Format
SOFT formatted family file(s) SOFTHelp
MINiML formatted family file(s) MINiMLHelp
Series Matrix File(s) TXTHelp

Supplementary file Size Download File type/resource
GSE240343_42MGBA-531.top300k.txt.gz 9.1 Mb (ftp)(http) TXT
GSE240343_42MGBA-WT.top300k.txt.gz 9.1 Mb (ftp)(http) TXT
GSE240343_42MGBA_RNA_DESeq2.xlsx 1.7 Mb (ftp)(http) XLSX
GSE240343_H4-881.top300k.txt.gz 9.1 Mb (ftp)(http) TXT
GSE240343_H4-WT.top300k.txt.gz 9.1 Mb (ftp)(http) TXT
GSE240343_H4_RNA_DESeq2.xlsx 1.7 Mb (ftp)(http) XLSX
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Raw data are available in SRA
Processed data are available on Series record

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