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KDM2A integrates DNA and histone modification signals through a CXXC/PHD module and direct interaction with HP1

Functional genomic elements are marked by characteristic DNA and histone modification signatures. How combinatorial chromatin modification states are recognized by epigenetic reader proteins and how this is linked to their biological function is largely unknown. Here we provide a detailed molecular...

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Autores principales: Borgel, Julie, Tyl, Marek, Schiller, Karin, Pusztai, Zsofia, Dooley, Christopher M., Deng, Wen, Wooding, Carol, White, Richard J., Warnecke, Tobias, Leonhardt, Heinrich, Busch-Nentwich, Elisabeth M., Bartke, Till
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5388433/
https://www.ncbi.nlm.nih.gov/pubmed/28180290
http://dx.doi.org/10.1093/nar/gkw979
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author Borgel, Julie
Tyl, Marek
Schiller, Karin
Pusztai, Zsofia
Dooley, Christopher M.
Deng, Wen
Wooding, Carol
White, Richard J.
Warnecke, Tobias
Leonhardt, Heinrich
Busch-Nentwich, Elisabeth M.
Bartke, Till
author_facet Borgel, Julie
Tyl, Marek
Schiller, Karin
Pusztai, Zsofia
Dooley, Christopher M.
Deng, Wen
Wooding, Carol
White, Richard J.
Warnecke, Tobias
Leonhardt, Heinrich
Busch-Nentwich, Elisabeth M.
Bartke, Till
author_sort Borgel, Julie
collection PubMed
description Functional genomic elements are marked by characteristic DNA and histone modification signatures. How combinatorial chromatin modification states are recognized by epigenetic reader proteins and how this is linked to their biological function is largely unknown. Here we provide a detailed molecular analysis of chromatin recognition by the lysine demethylase KDM2A. Using biochemical approaches we identify a nucleosome interaction module within KDM2A consisting of a CXXC type zinc finger, a PHD domain and a newly identified Heterochromatin Protein 1 (HP1) interaction motif that mediates direct binding between KDM2A and HP1. This nucleosome interaction module enables KDM2A to decode nucleosomal H3K9me3 modification in addition to CpG methylation signals. The multivalent engagement with DNA and HP1 results in a nucleosome binding circuit in which KDM2A can be recruited to H3K9me3-modified chromatin through HP1, and HP1 can be recruited to unmodified chromatin by KDM2A. A KDM2A mutant deficient in HP1-binding is inactive in an in vivo overexpression assay in zebrafish embryos demonstrating that the HP1 interaction is essential for KDM2A function. Our results reveal a complex regulation of chromatin binding for both KDM2A and HP1 that is modulated by DNA- and H3K9-methylation, and suggest a direct role for KDM2A in chromatin silencing.
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spelling pubmed-53884332017-04-18 KDM2A integrates DNA and histone modification signals through a CXXC/PHD module and direct interaction with HP1 Borgel, Julie Tyl, Marek Schiller, Karin Pusztai, Zsofia Dooley, Christopher M. Deng, Wen Wooding, Carol White, Richard J. Warnecke, Tobias Leonhardt, Heinrich Busch-Nentwich, Elisabeth M. Bartke, Till Nucleic Acids Res Gene regulation, Chromatin and Epigenetics Functional genomic elements are marked by characteristic DNA and histone modification signatures. How combinatorial chromatin modification states are recognized by epigenetic reader proteins and how this is linked to their biological function is largely unknown. Here we provide a detailed molecular analysis of chromatin recognition by the lysine demethylase KDM2A. Using biochemical approaches we identify a nucleosome interaction module within KDM2A consisting of a CXXC type zinc finger, a PHD domain and a newly identified Heterochromatin Protein 1 (HP1) interaction motif that mediates direct binding between KDM2A and HP1. This nucleosome interaction module enables KDM2A to decode nucleosomal H3K9me3 modification in addition to CpG methylation signals. The multivalent engagement with DNA and HP1 results in a nucleosome binding circuit in which KDM2A can be recruited to H3K9me3-modified chromatin through HP1, and HP1 can be recruited to unmodified chromatin by KDM2A. A KDM2A mutant deficient in HP1-binding is inactive in an in vivo overexpression assay in zebrafish embryos demonstrating that the HP1 interaction is essential for KDM2A function. Our results reveal a complex regulation of chromatin binding for both KDM2A and HP1 that is modulated by DNA- and H3K9-methylation, and suggest a direct role for KDM2A in chromatin silencing. Oxford University Press 2017-02-17 2016-10-24 /pmc/articles/PMC5388433/ /pubmed/28180290 http://dx.doi.org/10.1093/nar/gkw979 Text en © The Author(s) 2016. Published by Oxford University Press on behalf of Nucleic Acids Research. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Gene regulation, Chromatin and Epigenetics
Borgel, Julie
Tyl, Marek
Schiller, Karin
Pusztai, Zsofia
Dooley, Christopher M.
Deng, Wen
Wooding, Carol
White, Richard J.
Warnecke, Tobias
Leonhardt, Heinrich
Busch-Nentwich, Elisabeth M.
Bartke, Till
KDM2A integrates DNA and histone modification signals through a CXXC/PHD module and direct interaction with HP1
title KDM2A integrates DNA and histone modification signals through a CXXC/PHD module and direct interaction with HP1
title_full KDM2A integrates DNA and histone modification signals through a CXXC/PHD module and direct interaction with HP1
title_fullStr KDM2A integrates DNA and histone modification signals through a CXXC/PHD module and direct interaction with HP1
title_full_unstemmed KDM2A integrates DNA and histone modification signals through a CXXC/PHD module and direct interaction with HP1
title_short KDM2A integrates DNA and histone modification signals through a CXXC/PHD module and direct interaction with HP1
title_sort kdm2a integrates dna and histone modification signals through a cxxc/phd module and direct interaction with hp1
topic Gene regulation, Chromatin and Epigenetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5388433/
https://www.ncbi.nlm.nih.gov/pubmed/28180290
http://dx.doi.org/10.1093/nar/gkw979
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