Upstream distal regulatory elements contact the Lmo2 promoter in mouse erythroid cells.

The Lim domain only 2 (Lmo2) gene encodes a transcriptional cofactor critical for the development of hematopoietic stem cells. Several distal regulatory elements have been identified upstream of the Lmo2 gene in the human and mouse genomes that are capable of enhancing reporter gene expression in er...

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Main Authors: Anandi Bhattacharya, Chih-Yu Chen, Sara Ho, Jennifer A Mitchell
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3528669?pdf=render
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spelling doaj-fb30ebf6ed3c45a6882fe0e6371301fd2020-11-24T21:26:04ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-01712e5288010.1371/journal.pone.0052880Upstream distal regulatory elements contact the Lmo2 promoter in mouse erythroid cells.Anandi BhattacharyaChih-Yu ChenSara HoJennifer A MitchellThe Lim domain only 2 (Lmo2) gene encodes a transcriptional cofactor critical for the development of hematopoietic stem cells. Several distal regulatory elements have been identified upstream of the Lmo2 gene in the human and mouse genomes that are capable of enhancing reporter gene expression in erythroid cells and may be responsible for the high level transcription of Lmo2 in the erythroid lineage. In this study we investigate how these elements regulate transcription of Lmo2 and whether or not they function cooperatively in the endogenous context. Chromosome conformation capture (3C) experiments show that chromatin-chromatin interactions exist between upstream regulatory elements and the Lmo2 promoter in erythroid cells but that these interactions are absent from kidney where Lmo2 is transcribed at twelve fold lower levels. Specifically, long range chromatin-chromatin interactions occur between the Lmo2 proximal promoter and two broad regions, 3-31 and 66-105 kb upstream of Lmo2, which we term the proximal and distal control regions for Lmo2 (pCR and dCR respectively). Each of these regions is bound by several transcription factors suggesting that multiple regulatory elements cooperate in regulating high level transcription of Lmo2 in erythroid cells. Binding of CTCF and cohesin which support chromatin loops at other loci were also found within the dCR and at the Lmo2 proximal promoter. Intergenic transcription occurs throughout the dCR in erythroid cells but not in kidney suggesting a role for these intergenic transcripts in regulating Lmo2, similar to the broad domain of intergenic transcription observed at the human β-globin locus control region. Our data supports a model in which the dCR functions through a chromatin looping mechanism to contact and enhance Lmo2 transcription specifically in erythroid cells. Furthermore, these chromatin loops are supported by the cohesin complex recruited to both CTCF and transcription factor bound regions.http://europepmc.org/articles/PMC3528669?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Anandi Bhattacharya
Chih-Yu Chen
Sara Ho
Jennifer A Mitchell
spellingShingle Anandi Bhattacharya
Chih-Yu Chen
Sara Ho
Jennifer A Mitchell
Upstream distal regulatory elements contact the Lmo2 promoter in mouse erythroid cells.
PLoS ONE
author_facet Anandi Bhattacharya
Chih-Yu Chen
Sara Ho
Jennifer A Mitchell
author_sort Anandi Bhattacharya
title Upstream distal regulatory elements contact the Lmo2 promoter in mouse erythroid cells.
title_short Upstream distal regulatory elements contact the Lmo2 promoter in mouse erythroid cells.
title_full Upstream distal regulatory elements contact the Lmo2 promoter in mouse erythroid cells.
title_fullStr Upstream distal regulatory elements contact the Lmo2 promoter in mouse erythroid cells.
title_full_unstemmed Upstream distal regulatory elements contact the Lmo2 promoter in mouse erythroid cells.
title_sort upstream distal regulatory elements contact the lmo2 promoter in mouse erythroid cells.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description The Lim domain only 2 (Lmo2) gene encodes a transcriptional cofactor critical for the development of hematopoietic stem cells. Several distal regulatory elements have been identified upstream of the Lmo2 gene in the human and mouse genomes that are capable of enhancing reporter gene expression in erythroid cells and may be responsible for the high level transcription of Lmo2 in the erythroid lineage. In this study we investigate how these elements regulate transcription of Lmo2 and whether or not they function cooperatively in the endogenous context. Chromosome conformation capture (3C) experiments show that chromatin-chromatin interactions exist between upstream regulatory elements and the Lmo2 promoter in erythroid cells but that these interactions are absent from kidney where Lmo2 is transcribed at twelve fold lower levels. Specifically, long range chromatin-chromatin interactions occur between the Lmo2 proximal promoter and two broad regions, 3-31 and 66-105 kb upstream of Lmo2, which we term the proximal and distal control regions for Lmo2 (pCR and dCR respectively). Each of these regions is bound by several transcription factors suggesting that multiple regulatory elements cooperate in regulating high level transcription of Lmo2 in erythroid cells. Binding of CTCF and cohesin which support chromatin loops at other loci were also found within the dCR and at the Lmo2 proximal promoter. Intergenic transcription occurs throughout the dCR in erythroid cells but not in kidney suggesting a role for these intergenic transcripts in regulating Lmo2, similar to the broad domain of intergenic transcription observed at the human β-globin locus control region. Our data supports a model in which the dCR functions through a chromatin looping mechanism to contact and enhance Lmo2 transcription specifically in erythroid cells. Furthermore, these chromatin loops are supported by the cohesin complex recruited to both CTCF and transcription factor bound regions.
url http://europepmc.org/articles/PMC3528669?pdf=render
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