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PMID: 20062523 Published · ppublish English Journal Article Research Support, N.I.H., Intramural Research Support, Non-U.S. Gov't

VEZF1 elements mediate protection from DNA methylation.

PLoS genetics ·Vol. 6 ·No. 1 ·2010-01-00 ·Pages e1000804

Dickson J, Gowher H, Strogantsev R, Gaszner M, Hair A, Felsenfeld G, West AG

Abstract

There is growing consensus that genome organization and long-range gene regulation involves partitioning of the genome into domains of distinct epigenetic chromatin states. Chromatin insulator or barrier elements are key components of these processes as they can establish boundaries between chromatin states. The ability of elements such as the paradigm beta-globin HS4 insulator to block the range of enhancers or the spread of repressive histone modifications is well established. Here we have addressed the hypothesis that a barrier element in vertebrates should be capable of defending a gene from silencing by DNA methylation. Using an established stable reporter gene system, we find that HS4 acts specifically to protect a gene promoter from de novo DNA methylation. Notably, protection from methylation can occur in the absence of histone acetylation or transcription. There is a division of labor at HS4; the sequences that mediate protection from methylation are separable from those that mediate CTCF-dependent enhancer blocking and USF-dependent histone modification recruitment. The zinc finger protein VEZF1 was purified as the factor that specifically interacts with the methylation protection elements. VEZF1 is a candidate CpG island protection factor as the G-rich sequences bound by VEZF1 are frequently found at CpG island promoters. Indeed, we show that VEZF1 elements are sufficient to mediate demethylation and protection of the APRT CpG island promoter from DNA methylation. We propose that many barrier elements in vertebrates will prevent DNA methylation in addition to blocking the propagation of repressive histone modifications, as either process is sufficient to direct the establishment of an epigenetically stable silent chromatin state.

MeSH Terms
Animals Cell Line, Tumor Chickens/genetics,metabolism CpG Islands DNA Methylation DNA-Binding Proteins/genetics,metabolism Histones/genetics,metabolism Insulator Elements Promoter Regions, Genetic Protein Binding beta-Globins/genetics,metabolism
Chemicals
DNA-Binding Proteins Histones beta-Globins
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Dickson Jacqueline
Section of Pathology and Gene Regulation, Faculty of Medicine, University of Glasgow, Western Infirmary, Glasgow, United Kingdom.
Gowher Humaira
Strogantsev Ruslan
Gaszner Miklos
Hair Alan
Felsenfeld Gary
West Adam G
Conflict of Interest

The authors have declared that no competing interests exist.

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Article Info
Journal
PLoS genetics
Abbr.
PLoS Genet
ISSN
1553-7404
Published
2010-01-00
Epub
2010-00-08
Pages
e1000804
Language
English
Region
United States
NLM ID
101239074
PMCID
PMC2795164
Subset
IM
Grants
Medical Research Council · G0400180 · United Kingdom
Intramural NIH HHS · United States
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