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E-GEOD-37323 SRP012270, GSE37323 ChIP-seq Homo sapiens

Genome-wide reprogramming of the chromatin landscape underlies endocrine therapy resistance in breast cancer

·Released May 1, 2013 ·Updated May 22, 2013
9
Samples
9
Assays
1
References
Description

The estrogen receptor alpha (ERa) drives the growth of two-thirds of all breast cancers. Endocrine therapy impinges on estrogen-induced ERa activation to block tumor growth. However, half of ERa-positive breast cancers are tolerant or acquire endocrine therapy resistance. Here we demonstrate that breast cancer cells undergo genome-wide reprogramming of their chromatin landscape, defined by epigenomic maps and chromatin openness, as they acquire resistance to endocrine therapy. This reveals a role for the Notch pathway while excluding classical ERa signaling. In agreement, blocking Notch signaling, using gamma-secretase inhibitors, or targeting its downstream gene PBX1 abrogates growth of endocrine therapy-resistant breast cancer cells. Moreover Notch signaling through PBX1 directs a transcriptional program predictive of tumor outcome and endocrine therapy response. Comparing histone modifications (H3K4me2 and H3K36me3), chromatin openness (FAIRE) and PBX1 binding between endocrine therapy sensitive MCF7 and resistant MCF7-LTED cells.

References
Genome-wide reprogramming of the chromatin landscape underlies endocrine therapy resistance in breast cancer.
Magnani L, Stoeck A, Zhang X, L�nczky A, Mirabella AC, Wang TL, Gyorffy B, Lupien M
PMID: 23576735
Sample Attributes
antibody
None, H3K36me3, H3K4me2, none, PBX1 monoclonal antibody (M01)
catalog#
None, 07-030, ab9050
cell line
MCF7, MCF7-LTED
organism
Homo sapiens
vendor
None, Abcam, Millipore
vendor/catalog#
None, clone 4A2/H00005087-M01
Experiment Info
Accession
E-GEOD-37323
GEO ID
SRP012270, GSE37323
Type
ChIP-seq
Organism
Homo sapiens
Released
May 1, 2013
Updated
May 22, 2013
Submitter
Xiaoyang Zhang、 xiaoyang zhang
Analysis Services
Analysis Services

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