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Alternative splicing and allosteric regulation modulate the chromatin binding of UHRF1

UHRF1 is an important epigenetic regulator associated with apoptosis and tumour development. It is a multidomain protein that integrates readout of different histone modification states and DNA methylation with enzymatic histone ubiquitylation activity. Emerging evidence indicates that the chromatin...

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Autores principales: Tauber, Maria, Kreuz, Sarah, Lemak, Alexander, Mandal, Papita, Yerkesh, Zhadyra, Veluchamy, Alaguraj, Al-Gashgari, Bothayna, Aljahani, Abrar, Cortés-Medina, Lorena V, Azhibek, Dulat, Fan, Lixin, Ong, Michelle S, Duan, Shili, Houliston, Scott, Arrowsmith, Cheryl H, Fischle, Wolfgang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7430637/
https://www.ncbi.nlm.nih.gov/pubmed/32609811
http://dx.doi.org/10.1093/nar/gkaa520
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author Tauber, Maria
Kreuz, Sarah
Lemak, Alexander
Mandal, Papita
Yerkesh, Zhadyra
Veluchamy, Alaguraj
Al-Gashgari, Bothayna
Aljahani, Abrar
Cortés-Medina, Lorena V
Azhibek, Dulat
Fan, Lixin
Ong, Michelle S
Duan, Shili
Houliston, Scott
Arrowsmith, Cheryl H
Fischle, Wolfgang
author_facet Tauber, Maria
Kreuz, Sarah
Lemak, Alexander
Mandal, Papita
Yerkesh, Zhadyra
Veluchamy, Alaguraj
Al-Gashgari, Bothayna
Aljahani, Abrar
Cortés-Medina, Lorena V
Azhibek, Dulat
Fan, Lixin
Ong, Michelle S
Duan, Shili
Houliston, Scott
Arrowsmith, Cheryl H
Fischle, Wolfgang
author_sort Tauber, Maria
collection PubMed
description UHRF1 is an important epigenetic regulator associated with apoptosis and tumour development. It is a multidomain protein that integrates readout of different histone modification states and DNA methylation with enzymatic histone ubiquitylation activity. Emerging evidence indicates that the chromatin-binding and enzymatic modules of UHRF1 do not act in isolation but interplay in a coordinated and regulated manner. Here, we compared two splicing variants (V1, V2) of murine UHRF1 (mUHRF1) with human UHRF1 (hUHRF1). We show that insertion of nine amino acids in a linker region connecting the different TTD and PHD histone modification-binding domains causes distinct H3K9me3-binding behaviour of mUHRF1 V1. Structural analysis suggests that in mUHRF1 V1, in contrast to V2 and hUHRF1, the linker is anchored in a surface groove of the TTD domain, resulting in creation of a coupled TTD-PHD module. This establishes multivalent, synergistic H3-tail binding causing distinct cellular localization and enhanced H3K9me3-nucleosome ubiquitylation activity. In contrast to hUHRF1, H3K9me3-binding of the murine proteins is not allosterically regulated by phosphatidylinositol 5-phosphate that interacts with a separate less-conserved polybasic linker region of the protein. Our results highlight the importance of flexible linkers in regulating multidomain chromatin binding proteins and point to divergent evolution of their regulation.
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spelling pubmed-74306372020-08-19 Alternative splicing and allosteric regulation modulate the chromatin binding of UHRF1 Tauber, Maria Kreuz, Sarah Lemak, Alexander Mandal, Papita Yerkesh, Zhadyra Veluchamy, Alaguraj Al-Gashgari, Bothayna Aljahani, Abrar Cortés-Medina, Lorena V Azhibek, Dulat Fan, Lixin Ong, Michelle S Duan, Shili Houliston, Scott Arrowsmith, Cheryl H Fischle, Wolfgang Nucleic Acids Res Gene regulation, Chromatin and Epigenetics UHRF1 is an important epigenetic regulator associated with apoptosis and tumour development. It is a multidomain protein that integrates readout of different histone modification states and DNA methylation with enzymatic histone ubiquitylation activity. Emerging evidence indicates that the chromatin-binding and enzymatic modules of UHRF1 do not act in isolation but interplay in a coordinated and regulated manner. Here, we compared two splicing variants (V1, V2) of murine UHRF1 (mUHRF1) with human UHRF1 (hUHRF1). We show that insertion of nine amino acids in a linker region connecting the different TTD and PHD histone modification-binding domains causes distinct H3K9me3-binding behaviour of mUHRF1 V1. Structural analysis suggests that in mUHRF1 V1, in contrast to V2 and hUHRF1, the linker is anchored in a surface groove of the TTD domain, resulting in creation of a coupled TTD-PHD module. This establishes multivalent, synergistic H3-tail binding causing distinct cellular localization and enhanced H3K9me3-nucleosome ubiquitylation activity. In contrast to hUHRF1, H3K9me3-binding of the murine proteins is not allosterically regulated by phosphatidylinositol 5-phosphate that interacts with a separate less-conserved polybasic linker region of the protein. Our results highlight the importance of flexible linkers in regulating multidomain chromatin binding proteins and point to divergent evolution of their regulation. Oxford University Press 2020-07-01 /pmc/articles/PMC7430637/ /pubmed/32609811 http://dx.doi.org/10.1093/nar/gkaa520 Text en © The Author(s) 2020. 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
Tauber, Maria
Kreuz, Sarah
Lemak, Alexander
Mandal, Papita
Yerkesh, Zhadyra
Veluchamy, Alaguraj
Al-Gashgari, Bothayna
Aljahani, Abrar
Cortés-Medina, Lorena V
Azhibek, Dulat
Fan, Lixin
Ong, Michelle S
Duan, Shili
Houliston, Scott
Arrowsmith, Cheryl H
Fischle, Wolfgang
Alternative splicing and allosteric regulation modulate the chromatin binding of UHRF1
title Alternative splicing and allosteric regulation modulate the chromatin binding of UHRF1
title_full Alternative splicing and allosteric regulation modulate the chromatin binding of UHRF1
title_fullStr Alternative splicing and allosteric regulation modulate the chromatin binding of UHRF1
title_full_unstemmed Alternative splicing and allosteric regulation modulate the chromatin binding of UHRF1
title_short Alternative splicing and allosteric regulation modulate the chromatin binding of UHRF1
title_sort alternative splicing and allosteric regulation modulate the chromatin binding of uhrf1
topic Gene regulation, Chromatin and Epigenetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7430637/
https://www.ncbi.nlm.nih.gov/pubmed/32609811
http://dx.doi.org/10.1093/nar/gkaa520
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