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Series GSE41950 Query DataSets for GSE41950
Status Public on Jan 29, 2013
Title Genome-wide localization of exosome components to active promoters and chromatin insulators in Drosophila
Organism Drosophila melanogaster
Experiment type Genome binding/occupancy profiling by high throughput sequencing
Expression profiling by high throughput sequencing
Summary Chromatin insulators are functionally conserved DNA-protein complexes that are situated throughout the genome and organize independent transcriptional domains.  Previous work implicated RNA as an important cofactor in chromatin insulator activity, although the mechanisms by which RNA affects insulator activity are not yet understood.  Here we identify the exosome, the highly conserved major cellular 3’ to 5’ RNA degradation machinery, as a physical interactor of CP190-dependent chromatin insulator complexes in Drosophila.  High resolution genome-wide profiling of exosome by ChIP-seq in two different embryonic cell lines reveals extensive and specific overlap with the CP190, BEAF-32, and CTCF insulator proteins.  Colocalization occurs mainly at promoters but also well-characterized boundary elements, such as scs, scs’, Mcp, and Fab-8.  Surprisingly, exosome associates primarily with promoters but not gene bodies, arguing against simple cotranscriptional recruitment to RNA substrates.  We find that exosome is recruited to chromatin in a transcription dependent manner, preferentially to highly transcribed genes.  Similar to insulator proteins, exosome is also significantly enriched at divergently transcribed promoters.  Directed ChIP of exosome in cell lines depleted of insulator proteins shows that CTCF is specifically required for exosome association at Mcp and Fab-8 but not other sites, suggesting that alternate mechanisms must also contribute to exosome chromatin recruitment.  Taken together, our results reveal a novel relationship between exosome and chromatin insulators throughout the genome.
 
Overall design ChIP-seq of exosome components. RNA-seq after control and exosome subunit knockdown in Drosophila cell lines.
 
Contributor(s) Lim SJ, Boyle PJ, Chinen M, Dale RK, Lei EP
Citation(s) 23358822
Submission date Oct 31, 2012
Last update date May 15, 2019
Contact name Ryan Dale
E-mail(s) dalerr@nih.gov
Organization name National Institutes of Health
Department National Institute of Child Health and Human Development
Lab Bioinformatics and Scientific Programming Core
Street address Rm 10D39, 10 Center Drive
City Bethesda
State/province MD
ZIP/Postal code 20892
Country USA
 
Platforms (2)
GPL9061 Illumina Genome Analyzer II (Drosophila melanogaster)
GPL13304 Illumina HiSeq 2000 (Drosophila melanogaster)
Samples (48)
GSM1028090 tech_rep1_Rrp6_S2 [ChIP-Seq]
GSM1028091 tech_rep2_Rrp6_S2 [ChIP-Seq]
GSM1028092 tech_rep1_Rrp40_S2 [ChIP-Seq]
Relations
BioProject PRJNA178575
SRA SRP016896

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
GSE41950_Rrp40_S2.bed.gz 32.2 Kb (ftp)(http) BED
GSE41950_Rrp40_S3.bed.gz 24.5 Kb (ftp)(http) BED
GSE41950_Rrp6_S2.bed.gz 28.3 Kb (ftp)(http) BED
GSE41950_Rrp6_S3.bed.gz 23.8 Kb (ftp)(http) BED
GSE41950_Suhw_S2.bed.gz 18.3 Kb (ftp)(http) BED
GSE41950_Suhw_S3.bed.gz 22.6 Kb (ftp)(http) BED
GSE41950_csl4-s2-polyA.csv.gz 550.2 Kb (ftp)(http) CSV
GSE41950_csl4-s2-ribominus.csv.gz 104.3 Kb (ftp)(http) CSV
GSE41950_csl4-s3-polyA.csv.gz 496.4 Kb (ftp)(http) CSV
GSE41950_csl4-s3-ribominus.csv.gz 524.8 Kb (ftp)(http) CSV
GSE41950_rrp40-s2-polyA.csv.gz 357.6 Kb (ftp)(http) CSV
GSE41950_rrp40-s2-ribominus.csv.gz 149.7 Kb (ftp)(http) CSV
GSE41950_rrp40-s3-polyA.csv.gz 567.2 Kb (ftp)(http) CSV
GSE41950_rrp40-s3-ribominus.csv.gz 510.9 Kb (ftp)(http) CSV
GSE41950_rrp6-s2-polyA.csv.gz 562.5 Kb (ftp)(http) CSV
GSE41950_rrp6-s2-ribominus.csv.gz 142.0 Kb (ftp)(http) CSV
GSE41950_rrp6-s3-polyA.csv.gz 550.7 Kb (ftp)(http) CSV
GSE41950_rrp6-s3-ribominus.csv.gz 529.3 Kb (ftp)(http) CSV
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Processed data are available on Series record

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