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Myc and Miz-1 have coordinate genomic functions including targeting Hox genes in human embryonic stem cells

BACKGROUND: A proposed role for Myc in maintaining mouse embryonic stem (ES) cell pluripotency is transcriptional repression of key differentiation-promoting genes, but detail of the mechanism has remained an important open topic. RESULTS: To test the hypothesis that the zinc finger protein Miz-1 pl...

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Autores principales: Varlakhanova, Natalia, Cotterman, Rebecca, Bradnam, Keith, Korf, Ian, Knoepfler, Paul S
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3226433/
https://www.ncbi.nlm.nih.gov/pubmed/22053792
http://dx.doi.org/10.1186/1756-8935-4-20
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author Varlakhanova, Natalia
Cotterman, Rebecca
Bradnam, Keith
Korf, Ian
Knoepfler, Paul S
author_facet Varlakhanova, Natalia
Cotterman, Rebecca
Bradnam, Keith
Korf, Ian
Knoepfler, Paul S
author_sort Varlakhanova, Natalia
collection PubMed
description BACKGROUND: A proposed role for Myc in maintaining mouse embryonic stem (ES) cell pluripotency is transcriptional repression of key differentiation-promoting genes, but detail of the mechanism has remained an important open topic. RESULTS: To test the hypothesis that the zinc finger protein Miz-1 plays a central role, in the present work we conducted chromatin immunoprecipitation/microarray (ChIP-chip) analysis of Myc and Miz-1 in human ES cells, finding homeobox (Hox) genes as the most significant functional class of Miz-1 direct targets. Miz-1 differentiation-associated target genes specifically lack acetylated lysine 9 and trimethylated lysine 4 of histone H3 (AcH3K9 and H3K4me3) 9 histone marks, consistent with a repressed transcriptional state. Almost 30% of Miz-1 targets are also bound by Myc and these cobound genes are mostly factors that promote differentiation including Hox genes. Knockdown of Myc increased expression of differentiation genes directly bound by Myc and Miz-1, while a subset of the same genes is downregulated by Miz-1 loss-of-function. Myc and Miz-1 proteins interact with each other and associate with several corepressor factors in ES cells, suggesting a mechanism of repression of differentiation genes. CONCLUSIONS: Taken together our data indicate that Miz-1 and Myc maintain human ES cell pluripotency by coordinately suppressing differentiation genes, particularly Hox genes. These data also support a new model of how Myc and Miz-1 function on chromatin.
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spelling pubmed-32264332011-11-30 Myc and Miz-1 have coordinate genomic functions including targeting Hox genes in human embryonic stem cells Varlakhanova, Natalia Cotterman, Rebecca Bradnam, Keith Korf, Ian Knoepfler, Paul S Epigenetics Chromatin Research BACKGROUND: A proposed role for Myc in maintaining mouse embryonic stem (ES) cell pluripotency is transcriptional repression of key differentiation-promoting genes, but detail of the mechanism has remained an important open topic. RESULTS: To test the hypothesis that the zinc finger protein Miz-1 plays a central role, in the present work we conducted chromatin immunoprecipitation/microarray (ChIP-chip) analysis of Myc and Miz-1 in human ES cells, finding homeobox (Hox) genes as the most significant functional class of Miz-1 direct targets. Miz-1 differentiation-associated target genes specifically lack acetylated lysine 9 and trimethylated lysine 4 of histone H3 (AcH3K9 and H3K4me3) 9 histone marks, consistent with a repressed transcriptional state. Almost 30% of Miz-1 targets are also bound by Myc and these cobound genes are mostly factors that promote differentiation including Hox genes. Knockdown of Myc increased expression of differentiation genes directly bound by Myc and Miz-1, while a subset of the same genes is downregulated by Miz-1 loss-of-function. Myc and Miz-1 proteins interact with each other and associate with several corepressor factors in ES cells, suggesting a mechanism of repression of differentiation genes. CONCLUSIONS: Taken together our data indicate that Miz-1 and Myc maintain human ES cell pluripotency by coordinately suppressing differentiation genes, particularly Hox genes. These data also support a new model of how Myc and Miz-1 function on chromatin. BioMed Central 2011-11-04 /pmc/articles/PMC3226433/ /pubmed/22053792 http://dx.doi.org/10.1186/1756-8935-4-20 Text en Copyright ©2011 Varlakhanova et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Varlakhanova, Natalia
Cotterman, Rebecca
Bradnam, Keith
Korf, Ian
Knoepfler, Paul S
Myc and Miz-1 have coordinate genomic functions including targeting Hox genes in human embryonic stem cells
title Myc and Miz-1 have coordinate genomic functions including targeting Hox genes in human embryonic stem cells
title_full Myc and Miz-1 have coordinate genomic functions including targeting Hox genes in human embryonic stem cells
title_fullStr Myc and Miz-1 have coordinate genomic functions including targeting Hox genes in human embryonic stem cells
title_full_unstemmed Myc and Miz-1 have coordinate genomic functions including targeting Hox genes in human embryonic stem cells
title_short Myc and Miz-1 have coordinate genomic functions including targeting Hox genes in human embryonic stem cells
title_sort myc and miz-1 have coordinate genomic functions including targeting hox genes in human embryonic stem cells
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3226433/
https://www.ncbi.nlm.nih.gov/pubmed/22053792
http://dx.doi.org/10.1186/1756-8935-4-20
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