The genomic landscape of estrogen receptor α binding sites in mouse mammary gland.

Estrogen receptor α (ERα) is the major driving transcription factor in the mammary gland development as well as breast cancer initiation and progression. However, the genomic landscape of ERα binding sites in the normal mouse mammary gland has not been completely elucidated. Here, we mapped genome-w...

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Main Authors: Murugesan Palaniappan, Loc Nguyen, Sandra L Grimm, Yuanxin Xi, Zheng Xia, Wei Li, Cristian Coarfa
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2019-01-01
Series:PLoS ONE
Online Access:https://doi.org/10.1371/journal.pone.0220311
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spelling doaj-dc71ed3994fb41b2927bef0273da12fa2021-03-03T19:50:12ZengPublic Library of Science (PLoS)PLoS ONE1932-62032019-01-01148e022031110.1371/journal.pone.0220311The genomic landscape of estrogen receptor α binding sites in mouse mammary gland.Murugesan PalaniappanLoc NguyenSandra L GrimmYuanxin XiZheng XiaWei LiCristian CoarfaEstrogen receptor α (ERα) is the major driving transcription factor in the mammary gland development as well as breast cancer initiation and progression. However, the genomic landscape of ERα binding sites in the normal mouse mammary gland has not been completely elucidated. Here, we mapped genome-wide ERα binding events by chromatin immunoprecipitation followed by high-throughput sequencing (ChIP-seq) in the mouse mammary gland in response to estradiol. We identified 6237 high confidence ERα binding sites in two biological replicates and showed that many of these were located at distal enhancer regions. Furthermore, we discovered 3686 unique genes in the mouse genome that recruit ER in response to estradiol. Interrogation of ER-DNA binding sites in ER-positive luminal epithelial cells showed that the ERE, PAX2, SF1, and AP1 motifs were highly enriched at distal enhancer regions. In addition, comprehensive transcriptome analysis by RNA-seq revealed that 493 genes are differentially regulated by acute treatment with estradiol in the mouse mammary gland in vivo. Through integration of RNA-seq and ERα ChIP-seq data, we uncovered a novel ERα targetome in mouse mammary epithelial cells. Taken together, our study has identified the genomic landscape of ERα binding events in mouse mammary epithelial cells. Furthermore, our study also highlights the cis-regulatory elements and cofactors that are involved in estrogen signaling and may contribute to ductal elongation in the normal mouse mammary gland.https://doi.org/10.1371/journal.pone.0220311
collection DOAJ
language English
format Article
sources DOAJ
author Murugesan Palaniappan
Loc Nguyen
Sandra L Grimm
Yuanxin Xi
Zheng Xia
Wei Li
Cristian Coarfa
spellingShingle Murugesan Palaniappan
Loc Nguyen
Sandra L Grimm
Yuanxin Xi
Zheng Xia
Wei Li
Cristian Coarfa
The genomic landscape of estrogen receptor α binding sites in mouse mammary gland.
PLoS ONE
author_facet Murugesan Palaniappan
Loc Nguyen
Sandra L Grimm
Yuanxin Xi
Zheng Xia
Wei Li
Cristian Coarfa
author_sort Murugesan Palaniappan
title The genomic landscape of estrogen receptor α binding sites in mouse mammary gland.
title_short The genomic landscape of estrogen receptor α binding sites in mouse mammary gland.
title_full The genomic landscape of estrogen receptor α binding sites in mouse mammary gland.
title_fullStr The genomic landscape of estrogen receptor α binding sites in mouse mammary gland.
title_full_unstemmed The genomic landscape of estrogen receptor α binding sites in mouse mammary gland.
title_sort genomic landscape of estrogen receptor α binding sites in mouse mammary gland.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2019-01-01
description Estrogen receptor α (ERα) is the major driving transcription factor in the mammary gland development as well as breast cancer initiation and progression. However, the genomic landscape of ERα binding sites in the normal mouse mammary gland has not been completely elucidated. Here, we mapped genome-wide ERα binding events by chromatin immunoprecipitation followed by high-throughput sequencing (ChIP-seq) in the mouse mammary gland in response to estradiol. We identified 6237 high confidence ERα binding sites in two biological replicates and showed that many of these were located at distal enhancer regions. Furthermore, we discovered 3686 unique genes in the mouse genome that recruit ER in response to estradiol. Interrogation of ER-DNA binding sites in ER-positive luminal epithelial cells showed that the ERE, PAX2, SF1, and AP1 motifs were highly enriched at distal enhancer regions. In addition, comprehensive transcriptome analysis by RNA-seq revealed that 493 genes are differentially regulated by acute treatment with estradiol in the mouse mammary gland in vivo. Through integration of RNA-seq and ERα ChIP-seq data, we uncovered a novel ERα targetome in mouse mammary epithelial cells. Taken together, our study has identified the genomic landscape of ERα binding events in mouse mammary epithelial cells. Furthermore, our study also highlights the cis-regulatory elements and cofactors that are involved in estrogen signaling and may contribute to ductal elongation in the normal mouse mammary gland.
url https://doi.org/10.1371/journal.pone.0220311
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