Role of Ucp1 enhancer methylation and chromatin remodelling in the control of Ucp1 expression in murine adipose tissue
Author(s)
Shore, A
Karamitri, A
Kemp, P
Speakman, JR
Lomax, MA
Type
Journal Article
Abstract
Aims/hypothesis
Increasing the expression of the brown adipose tissue-specific gene uncoupling protein-1 (Ucp1) is a potential target for treating obesity. We investigated the role of DNA methylation and histone modification in Ucp1 expression in adipose cell lines and ex vivo murine adipose tissues.
Methods
Methylation state of the Ucp1 enhancer was studied using bisulphite mapping in murine adipose cell lines, and tissue taken from cold-stressed mice, coupled with functional assays of the effects of methylation and demethylation of the Ucp1 promoter on gene expression and nuclear protein binding.
Results
We show that demethylation of the Ucp1 promoter by 5-aza-deoxycytidine increases Ucp1 expression while methylation of Ucp1 promoter–reporter constructs decreases expression. Brown adipose tissue-specific Ucp1 expression is associated with decreased CpG dinucleotide methylation of the Ucp1 enhancer. The lowest CpG dinucleotide methylation state was found in two cyclic AMP response elements (CRE3, CRE2) in the Ucp1 promoter and methylation of the CpG in CRE2, but not CRE3 decreased nuclear protein binding. Chromatin immunoprecipitation assays revealed the presence of the silencing DiMethH3K9 modification on the Ucp1 enhancer in white adipose tissue and the appearance of the active TriMethH3K4 mark at the Ucp1 promoter in brown adipose tissue in response to a cold environment.
Conclusions/interpretation
The results demonstrate that CpG dinucleotide methylation of the Ucp1 enhancer exhibits tissue-specific patterns in murine tissue and cell lines and suggest that adipose tissue-specific Ucp1 expression involves demethylation of CpG dinucleotides found in regulatory CREs in the Ucp1 enhancer, as well as modification of histone tails.
Increasing the expression of the brown adipose tissue-specific gene uncoupling protein-1 (Ucp1) is a potential target for treating obesity. We investigated the role of DNA methylation and histone modification in Ucp1 expression in adipose cell lines and ex vivo murine adipose tissues.
Methods
Methylation state of the Ucp1 enhancer was studied using bisulphite mapping in murine adipose cell lines, and tissue taken from cold-stressed mice, coupled with functional assays of the effects of methylation and demethylation of the Ucp1 promoter on gene expression and nuclear protein binding.
Results
We show that demethylation of the Ucp1 promoter by 5-aza-deoxycytidine increases Ucp1 expression while methylation of Ucp1 promoter–reporter constructs decreases expression. Brown adipose tissue-specific Ucp1 expression is associated with decreased CpG dinucleotide methylation of the Ucp1 enhancer. The lowest CpG dinucleotide methylation state was found in two cyclic AMP response elements (CRE3, CRE2) in the Ucp1 promoter and methylation of the CpG in CRE2, but not CRE3 decreased nuclear protein binding. Chromatin immunoprecipitation assays revealed the presence of the silencing DiMethH3K9 modification on the Ucp1 enhancer in white adipose tissue and the appearance of the active TriMethH3K4 mark at the Ucp1 promoter in brown adipose tissue in response to a cold environment.
Conclusions/interpretation
The results demonstrate that CpG dinucleotide methylation of the Ucp1 enhancer exhibits tissue-specific patterns in murine tissue and cell lines and suggest that adipose tissue-specific Ucp1 expression involves demethylation of CpG dinucleotides found in regulatory CREs in the Ucp1 enhancer, as well as modification of histone tails.
Date Issued
2010-03-18
Date Acceptance
2010-01-19
Citation
Diabetologia, 2010, 53 (6), pp.1164-1173
ISSN
0012-186X
Publisher
Springer Verlag
Start Page
1164
End Page
1173
Journal / Book Title
Diabetologia
Volume
53
Issue
6
Copyright Statement
© The Author(s) 2010. This article is published with open access at Springerlink.com
Subjects
Science & Technology
Life Sciences & Biomedicine
Endocrinology & Metabolism
ENDOCRINOLOGY & METABOLISM
CpG dinucleotide
Methylation
Cyclic AMP response element
Uncoupling protein-1
Adipose tissue
DNA DEMETHYLATION
UPSTREAM ENHANCER
BROWN ADIPOCYTES
WHITE ADIPOCYTES
RESPONSE ELEMENT
BINDING PROTEIN
LEPTIN PROMOTER
GENE-EXPRESSION
3T3-L1 CELLS
HUMAN GENOME
Adipose Tissue, Brown
Adipose Tissue, White
Animals
Cell Line
Cells, Cultured
Chromatin Assembly and Disassembly
Chromatin Immunoprecipitation
Cold Temperature
CpG Islands
DNA Methylation
Female
Gene Silencing
Histones
Ion Channels
Mice
Mice, Inbred C57BL
Mitochondrial Proteins
Promoter Regions, Genetic
Reverse Transcriptase Polymerase Chain Reaction
1103 Clinical Sciences
1114 Paediatrics And Reproductive Medicine
1117 Public Health And Health Services
Publication Status
Published