Deciphering the Mechanism of G9a Spreading Genome-wide

The cell differentiation process is associated with activation and repression of different genes, whereby the formation of heterochromatin is mediated by spreading of repressor proteins along large chromatin domains. Some of these proteins are methyltransferases, including GLP and G9a that are impli...

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Main Author: Yevstafiev, Dmytro
Other Authors: Brand, Marjorie
Language:en
Published: Université d'Ottawa / University of Ottawa 2015
Subjects:
G9a
GLP
Online Access:http://hdl.handle.net/10393/32005
http://dx.doi.org/10.20381/ruor-2741
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spelling ndltd-uottawa.ca-oai-ruor.uottawa.ca-10393-320052018-01-05T19:02:14Z Deciphering the Mechanism of G9a Spreading Genome-wide Yevstafiev, Dmytro Brand, Marjorie G9a GLP Epigenetics ChIP ChIP-sequencing Ankyrin domain Spreading genome-wide The cell differentiation process is associated with activation and repression of different genes, whereby the formation of heterochromatin is mediated by spreading of repressor proteins along large chromatin domains. Some of these proteins are methyltransferases, including GLP and G9a that are implicated in the addition of mono- and dimethyl groups to lysine 9 at Histone 3. Despite extensive research the exact mechanism of binding and spreading of G9a and GLP is unclear. To better understand the molecular mechanisms through which G9a and GLP bind to chromatin we tested the in vivo binding of a mutant G9a that is unable to bind to H3K9me2 histone marks via its Ankyrin domain. Murine erythroleukemia (MEL) cell line with expression of mutant G9a was generated using recombinant DNA technologies; G9a binding targets genome-wide were detected by the analysis of ChIP-sequencing data. We validated ChIP-sequencing data providing a reliable tool to visualize G9a targets in MEL cells. We also found that G9a Ankyrin mutant bound to all tested regions suggesting that the Ankyrin domain is not the only factor that contributes to the binding of G9a on chromatin in vivo. 2015-01-29T16:36:42Z 2015-01-29T16:36:42Z 2015 2015 Thesis http://hdl.handle.net/10393/32005 http://dx.doi.org/10.20381/ruor-2741 en Université d'Ottawa / University of Ottawa
collection NDLTD
language en
sources NDLTD
topic G9a
GLP
Epigenetics
ChIP
ChIP-sequencing
Ankyrin domain
Spreading genome-wide
spellingShingle G9a
GLP
Epigenetics
ChIP
ChIP-sequencing
Ankyrin domain
Spreading genome-wide
Yevstafiev, Dmytro
Deciphering the Mechanism of G9a Spreading Genome-wide
description The cell differentiation process is associated with activation and repression of different genes, whereby the formation of heterochromatin is mediated by spreading of repressor proteins along large chromatin domains. Some of these proteins are methyltransferases, including GLP and G9a that are implicated in the addition of mono- and dimethyl groups to lysine 9 at Histone 3. Despite extensive research the exact mechanism of binding and spreading of G9a and GLP is unclear. To better understand the molecular mechanisms through which G9a and GLP bind to chromatin we tested the in vivo binding of a mutant G9a that is unable to bind to H3K9me2 histone marks via its Ankyrin domain. Murine erythroleukemia (MEL) cell line with expression of mutant G9a was generated using recombinant DNA technologies; G9a binding targets genome-wide were detected by the analysis of ChIP-sequencing data. We validated ChIP-sequencing data providing a reliable tool to visualize G9a targets in MEL cells. We also found that G9a Ankyrin mutant bound to all tested regions suggesting that the Ankyrin domain is not the only factor that contributes to the binding of G9a on chromatin in vivo.
author2 Brand, Marjorie
author_facet Brand, Marjorie
Yevstafiev, Dmytro
author Yevstafiev, Dmytro
author_sort Yevstafiev, Dmytro
title Deciphering the Mechanism of G9a Spreading Genome-wide
title_short Deciphering the Mechanism of G9a Spreading Genome-wide
title_full Deciphering the Mechanism of G9a Spreading Genome-wide
title_fullStr Deciphering the Mechanism of G9a Spreading Genome-wide
title_full_unstemmed Deciphering the Mechanism of G9a Spreading Genome-wide
title_sort deciphering the mechanism of g9a spreading genome-wide
publisher Université d'Ottawa / University of Ottawa
publishDate 2015
url http://hdl.handle.net/10393/32005
http://dx.doi.org/10.20381/ruor-2741
work_keys_str_mv AT yevstafievdmytro decipheringthemechanismofg9aspreadinggenomewide
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