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Series GSE15082 Query DataSets for GSE15082
Status Public on Mar 05, 2009
Title Transcription Initiation Activity Sets Replication Origin Efficiency in Mammalian Cells
Organism Mus musculus
Experiment type Other
Summary Genomic mapping of DNA replication origins (ORIs) in mammals provides a powerful means for understanding the regulatory complexity of our genome. Here we combine a genome-wide approach to identify preferential sites of DNA replication initiation at 0.4% of the mouse genome with detailed molecular analysis at distinct classes of ORIs according to their location relative to the genes. Our study reveals that 85% of the replication initiation sites in mouse embryonic stem (ES) cells are associated with transcriptional units. Nearly half of the identified ORIs map at promoter regions and, interestingly, ORI density strongly correlates with promoter density, reflecting the coordinated organisation of replication and transcription in the mouse genome. Detailed analysis of ORI activity showed that CpG island promoter-ORIs are the most efficient ORIs in ES cells and both ORI specification and firing efficiency are maintained across cell types. Remarkably, the distribution of replication initiation sites at promoter-ORIs exactly parallels that of transcription start sites (TSS) suggesting a co-evolution of the regulatory regions driving replication and transcription. Moreover, we found that promoter-ORIs are significantly enriched in CAGE tags derived from early embryos relative to all promoters. This association implies that transcription initiation early in development sets the probability of ORI activation unveiling a new hallmark in ORI efficiency regulation in mammalian cells.
 
Overall design Two biological replicates of lambda-exonuclease treated short nascent strands (100-600 or 300-800 nt in length) were co-hybridised with genomic DNA from the same cells to tiled genomic array covering 10.1 Mb of the mouse genome (Agilent Technologies)
 
Contributor(s) Sequeira-Mendes J, Díaz-Uriarte R, Apedaile A, Huntley D, Brockdorff N, Gómez M
Citation(s) 19360092
Submission date Mar 03, 2009
Last update date Mar 21, 2012
Contact name Ramon Diaz-Uriarte
E-mail(s) rdiaz02@gmail.com
Phone +34-91-732-8000
Organization name Spanish National Cancer Research Centre (CNIO)
Department Structural Biology and Biocomputing Programme
Street address Melchor Fernandez Almagro 3
City Madrid
State/province Madrid
ZIP/Postal code 28029
Country Spain
 
Platforms (1)
GPL8246 Oxford Gene Technology/Agilent 60-mer oligonucleotide 22K feature array
Samples (4)
GSM377334 100-600 nt nascent strands, hyb1
GSM377335 100-600 nt nascent strands, hyb2
GSM377336 300-800 nt nascent strands, hyb1
Relations
BioProject PRJNA114781

Download family Format
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Series Matrix File(s) TXTHelp

Supplementary file Size Download File type/resource
GSE15082_RAW.tar 16.4 Mb (http)(custom) TAR (of TXT)
Processed data included within Sample table

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