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SRX275801: GSM1135047: OIS Ras-Induced H3K4me3; Homo sapiens; ChIP-Seq
1 ILLUMINA (Illumina HiSeq 2000) run: 208.9M spots, 10.4G bases, 7Gb downloads

Submitted by: Gene Expression Omnibus (GEO)
Study: Lamin B1 depletion in senescent cells triggers large-Scale changes in gene expression and in the chromatin landscape[ChIP-seq]
show Abstracthide Abstract
Cellular senescence is a stable proliferation arrest in response to stress, associated with an altered secretory pathway (Senescence Associated Secretory Phenotype (SASP)). Senescence-associated proliferation arrest and the SASP are thought to act in concert to promote tumor suppression and tissue aging. While chromatin regulation and down regulation of lamin B1 have been implicated as effectors of cell senescence, functional interactions between them are poorly understood. We compared the genome-wide distributions of H3K4me3 and H3K27me3 between proliferating and senescent primary human cells and found dramatic differences, including large-scale domains of H3K4me3- and H3K27me3-enriched "mesas" and H3K27me3-depleted "canyons" in senescent cells. Senescent mesas form at the sites of lamin B1-associated domains (LADs) in proliferating cells. Mesas also overlap with regions that exhibit DNA hypomethylation in cancer, suggesting that chromatin changes in pre-malignant senescent cells foreshadow epigenetic changes in cancer. Proliferating fibroblasts from Hutchinson-Gilford Progeria Syndrome patients expressing mutant lamin A (progerin) also show evidence of H3K4me3 mesas, suggesting a link between premature chromatin changes and accelerated cell senescence and tissue aging. In contrast, canyons form mostly in between LADs and are enriched in genes, gene promoters and enhancers. Strikingly, H3K27me3 loss in canyons is correlated with upregulation of key senescence genes, including genes comprising the SASP, indicating a link between global changes in chromatin structure and local regulation of gene expression. Finally, premature reduction of lamin B1 in midlife proliferating cells triggers formation of senescence-associated mesas and canyons and accelerated senescence. Together, our data illustrate a profound reorganization of chromatin during senescence, and suggest that down regulation of lamin B1 in senescence is a key trigger of global and local chromatin changes that impact gene expression, aging and cancer. Overall design: One lane per sample, with replicates; four lanes H3 (one proliferating, one senescent, one control, one Ras-induced), four lanes H3K27me3 (three proliferating, one senescent), two lanes H3K4me3 (one control, one ras-induced)
Sample: OIS Ras-Induced H3K4me3
SAMN02141294 • SRS419353 • All experiments • All runs
Organism: Homo sapiens
Library:
Instrument: Illumina HiSeq 2000
Strategy: ChIP-Seq
Source: GENOMIC
Selection: ChIP
Layout: SINGLE
Construction protocol: Cells in 10cm2 dishes were fixed in 1% formaldehyde for 10 minutes and fixation was quenched with addition of glycine to 125mM for an additional 5 minutes. Cells were harvested by scraping from plates, and washed twice in 1xPBS before storage at -80C. ChIP was performed as described in the Young lab protocol, except that extracts were sonicated twice for 9 minutes each round (30 seconds sonication with intermediate incubation of 30 seconds per round) using a Bioruptor (Diagenode). All ChIPs were performed using 500µg of extract 2µg of antibody per sample. 30µl of Protein G Dynabeads (Invitrogen 100.02D) were used per ChIP. For sequencing, 10ng ChIP DNA was used to make sequencing libraries using standard Illumina library single-end construction procedures. Sequencing was performed on either Illumina GAIIx or Hi-Seq platforms (36bp, single-end and 50 or 100bp, single or paired-end reads, respectively).
Experiment attributes:
GEO Accession: GSM1135047
Links:
External link:
Runs: 1 run, 208.9M spots, 10.4G bases, 7Gb
Run# of Spots# of BasesSizePublished
SRR847390208,869,26910.4G7Gb2013-09-09

ID:
390545

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