PEG3 control on the mammalian MSL complex.

Peg3 (paternally expressed gene 3) encodes a DNA-binding protein that functions as a transcriptional repressor. Recent studies revealed that PEG3 binds to Msl1 (male-specific lethal 1) and Msl3, the two main components of the MSL complex. In the current study, we investigated potential roles of Peg3...

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Main Authors: An Ye, Hana Kim, Joomyeong Kim
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2017-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5469463?pdf=render
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spelling doaj-b83e98a52cf84e4587b30c639d55b33a2020-11-24T21:36:17ZengPublic Library of Science (PLoS)PLoS ONE1932-62032017-01-01126e017836310.1371/journal.pone.0178363PEG3 control on the mammalian MSL complex.An YeHana KimJoomyeong KimPeg3 (paternally expressed gene 3) encodes a DNA-binding protein that functions as a transcriptional repressor. Recent studies revealed that PEG3 binds to Msl1 (male-specific lethal 1) and Msl3, the two main components of the MSL complex. In the current study, we investigated potential roles of Peg3 in controlling its downstream genes through H4K16ac, the histone modification by the MSL complex. According to the results, complete removal of PEG3 resulted in up-regulation of Msl1 and Msl3, and subsequently an increase in the global levels of H4K16ac, confirming PEG3 as a transcriptional repressor for MSL during mammalian development. Genome-wide analyses further revealed that about 10% of the entire gene catalogue was affected in the MEF cells lacking PEG3, displaying the increased levels of H4K16ac in their promoter regions. The expression levels of a small subset of the affected genes were up-regulated in the MEF cells lacking PEG3. Interestingly, three Hox clusters also exhibited changes in the levels of H4K16ac, suggesting potential roles of PEG3 and MSL in the regulation of Hox clusters. Overall, the current study reports that Peg3 may control its downstream genes through mammalian MSL.http://europepmc.org/articles/PMC5469463?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author An Ye
Hana Kim
Joomyeong Kim
spellingShingle An Ye
Hana Kim
Joomyeong Kim
PEG3 control on the mammalian MSL complex.
PLoS ONE
author_facet An Ye
Hana Kim
Joomyeong Kim
author_sort An Ye
title PEG3 control on the mammalian MSL complex.
title_short PEG3 control on the mammalian MSL complex.
title_full PEG3 control on the mammalian MSL complex.
title_fullStr PEG3 control on the mammalian MSL complex.
title_full_unstemmed PEG3 control on the mammalian MSL complex.
title_sort peg3 control on the mammalian msl complex.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2017-01-01
description Peg3 (paternally expressed gene 3) encodes a DNA-binding protein that functions as a transcriptional repressor. Recent studies revealed that PEG3 binds to Msl1 (male-specific lethal 1) and Msl3, the two main components of the MSL complex. In the current study, we investigated potential roles of Peg3 in controlling its downstream genes through H4K16ac, the histone modification by the MSL complex. According to the results, complete removal of PEG3 resulted in up-regulation of Msl1 and Msl3, and subsequently an increase in the global levels of H4K16ac, confirming PEG3 as a transcriptional repressor for MSL during mammalian development. Genome-wide analyses further revealed that about 10% of the entire gene catalogue was affected in the MEF cells lacking PEG3, displaying the increased levels of H4K16ac in their promoter regions. The expression levels of a small subset of the affected genes were up-regulated in the MEF cells lacking PEG3. Interestingly, three Hox clusters also exhibited changes in the levels of H4K16ac, suggesting potential roles of PEG3 and MSL in the regulation of Hox clusters. Overall, the current study reports that Peg3 may control its downstream genes through mammalian MSL.
url http://europepmc.org/articles/PMC5469463?pdf=render
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