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  4. Relationship between estrogen receptor alpha location and gene induction reveals the importance of downstream sites and cofactors
 
research article

Relationship between estrogen receptor alpha location and gene induction reveals the importance of downstream sites and cofactors

Parisi, Fabio
•
Sonderegger, Bernhard
•
Wirapati, Pratyaksha
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2009
BMC genomics

BACKGROUND: To understand cancer-related modifications to transcriptional programs requires detailed knowledge about the activation of signal-transduction pathways and gene expression programs. To investigate the mechanisms of target gene regulation by human estrogen receptor alpha (hERalpha), we combine extensive location and expression datasets with genomic sequence analysis. In particular, we study the influence of patterns of DNA occupancy by hERalpha on expression phenotypes. RESULTS: We find that strong ChIP-chip sites co-localize with strong hERalpha consensus sites and detect nucleotide bias near hERalpha sites. The localization of ChIP-chip sites relative to annotated genes shows that weak sites are enriched near transcription start sites, while stronger sites show no positional bias. Assessing the relationship between binding configurations and expression phenotypes, we find binding sites downstream of the transcription start site (TSS) to be equally good or better predictors of hERalpha-mediated expression as upstream sites. The study of FOX and SP1 cofactor sites near hERalpha ChIP sites shows that induced genes frequently have FOX or SP1 sites. Finally we integrate these multiple datasets to define a high confidence set of primary hERalpha target genes. CONCLUSION: Our results support the model of long-range interactions of hERalpha with the promoter-bound cofactor SP1 residing at the promoter of hERalpha target genes. FOX motifs co-occur with hERalpha motifs along responsive genes. Importantly we show that the spatial arrangement of sites near the start sites and within the full transcript is important in determining response to estrogen signaling.

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Type
research article
DOI
10.1186/1471-2164-10-381
Web of Science ID

WOS:000269512100001

Author(s)
Parisi, Fabio
Sonderegger, Bernhard
Wirapati, Pratyaksha
Delorenzi, Mauro
Naef, Felix  
Date Issued

2009

Publisher

BioMed Central

Published in
BMC genomics
Volume

10

Start page

381

Subjects

Gene Expression Regulation

•

Transcription Initiation Site

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
UPNAE  
Available on Infoscience
November 1, 2010
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/56549
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