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E-GEOD-37589 GSE37589, SRP012507 ChIP-seq , Homo sapiens

Identification of Novel NRF2-Regulated Genes by ChIPSeq

·Released June 18, 2012 ·Updated March 11, 2013
12
Samples
12
Assays
1
References
Description

Cellular oxidative and electrophilic stress triggers a protective response in mammals regulated by NRF2 (nuclear factor (erythroid-derived) 2-like; NFE2L2) binding to DNA-regulatory sequences near stress responsive genes. Studies using Nrf2-deficient mice suggest that hundreds of genes may be regulated by NRF2. To identify human NRF2-regulated genes, we conducted ChIP-sequencing experiments in lymphoid cells treated with the dietary isothiocyanate, sulforaphane (SFN) and carried out follow-up biological experiments on candidates. We found 242 high-confidence, NRF2-bound genomic regions and 96% of these regions contained NRF2-regulatory sequence motifs. The majority of binding sites were near potential novel members of the NRF2 pathway. Validation of selected candidate genes using parallel ChIP techniques and in NRF2-silenced cell lines indicated that the expression of about two thirds of the candidates are likely to be directly NRF2-dependent including retinoid X receptor alpha (RXRA). NRF2 regulation of RXRAhas implications for response to retinoid treatments and adipogenesis. In mouse 3T3-L1 cells SFN treatment affected Rxra expression early in adipogenesis and knockdown of Nrf2 delayed Rxra expression, both leading to impaired adipogenesis. ChIP-Seq analysis of NRF2 binding sites in human lymphoblastoid cells treated with sulforaphane or vehicle

References
Identification of novel NRF2-regulated genes by ChIP-Seq: influence on retinoid X receptor alpha.
Chorley BN, Campbell MR, Wang X, Karaca M, Sambandan D, Bangura F, Xue P, Pi J, Kleeberger SR, Bell DA
PMID: 22581777
Sample Attributes
BioSourceProvider
None, Coriell; http://ccr.coriell.org/Sections/Search/Search.aspx?PgId=165&q=GM06993, Coriell; http://ccr.coriell.org/Sections/Search/Search.aspx?PgId=165&q=GM07000, Coriell; http://ccr.coriell.org/Sections/Search/Search.aspx?PgId=165&q=GM11882, Coriell; http://ccr.coriell.org/Sections/Search/Search.aspx?PgId=165&q=GM11992, Coriell; http://ccr.coriell.org/Sections/Search/Search.aspx?PgId=165&q=GM11994, Coriell; http://ccr.coriell.org/Sections/Search/Search.aspx?PgId=165&q=GM12763, Coriell; http://ccr.coriell.org/Sections/Search/Search.aspx?PgId=165&q=GM12872, Coriell; http://ccr.coriell.org/Sections/Search/Search.aspx?PgId=165&q=GM12878
cell line
None, GM06993, GM07000, GM11882, GM11992, GM12763, GM12872, GM06993, GM12872, GM07000, GM11882, GM11992, GM12763, GM11994, GM12878
cell type
None, lymphoblastoid
chip antibody
None, none, rabbit IgG antibody (Invitrogen), rabbit monoclonal anti-NRF2 (Epitomics, Clone ID EP1808Y)
Organism
None, Homo sapiens
Experiment Info
Accession
E-GEOD-37589
GEO ID
GSE37589, SRP012507
Type
ChIP-seq
Organism
, Homo sapiens
Released
June 18, 2012
Updated
March 11, 2013
Submitter
Xuting Wang、 Xuting Wang、 Michelle R Campbell、 Douglas A Bell、 Brian N Chorley
Analysis Services
Analysis Services

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