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Structural basis of histone H2A lysine 119 deubiquitination by Polycomb Repressive Deubiquitinase BAP1/ASXL1

The maintenance of gene expression patterns during metazoan development is achieved by the actions of Polycomb group (PcG) complexes. An essential modification marking silenced genes is monoubiquitination of histone H2A lysine 119 (H2AK119Ub) deposited by the E3 ubiquitin ligase activity of the non-...

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Autores principales: Thomas, Jonathan F., Valencia-Sánchez, Marco Igor, Tamburri, Simone, Gloor, Susan L., Rustichelli, Samantha, Godínez-López, Victoria, De Ioannes, Pablo, Lee, Rachel, Abini-Agbomson, Stephen, Gretarsson, Kristjan, Burg, Jonathan M., Hickman, Allison R., Sun, Lu, Gopinath, Saarang, Taylor, Hailey, Meiners, Matthew J., Cheek, Marcus A., Rice, William, Nudler, Evgeny, Lu, Chao, Keogh, Michael-Christopher, Pasini, Diego, Armache, Karim-Jean
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9980132/
https://www.ncbi.nlm.nih.gov/pubmed/36865140
http://dx.doi.org/10.1101/2023.02.23.529554
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author Thomas, Jonathan F.
Valencia-Sánchez, Marco Igor
Tamburri, Simone
Gloor, Susan L.
Rustichelli, Samantha
Godínez-López, Victoria
De Ioannes, Pablo
Lee, Rachel
Abini-Agbomson, Stephen
Gretarsson, Kristjan
Burg, Jonathan M.
Hickman, Allison R.
Sun, Lu
Gopinath, Saarang
Taylor, Hailey
Meiners, Matthew J.
Cheek, Marcus A.
Rice, William
Nudler, Evgeny
Lu, Chao
Keogh, Michael-Christopher
Pasini, Diego
Armache, Karim-Jean
author_facet Thomas, Jonathan F.
Valencia-Sánchez, Marco Igor
Tamburri, Simone
Gloor, Susan L.
Rustichelli, Samantha
Godínez-López, Victoria
De Ioannes, Pablo
Lee, Rachel
Abini-Agbomson, Stephen
Gretarsson, Kristjan
Burg, Jonathan M.
Hickman, Allison R.
Sun, Lu
Gopinath, Saarang
Taylor, Hailey
Meiners, Matthew J.
Cheek, Marcus A.
Rice, William
Nudler, Evgeny
Lu, Chao
Keogh, Michael-Christopher
Pasini, Diego
Armache, Karim-Jean
author_sort Thomas, Jonathan F.
collection PubMed
description The maintenance of gene expression patterns during metazoan development is achieved by the actions of Polycomb group (PcG) complexes. An essential modification marking silenced genes is monoubiquitination of histone H2A lysine 119 (H2AK119Ub) deposited by the E3 ubiquitin ligase activity of the non-canonical Polycomb Repressive Complex 1. The Polycomb Repressive Deubiquitinase (PR-DUB) complex cleaves monoubiquitin from histone H2A lysine 119 (H2AK119Ub) to restrict focal H2AK119Ub at Polycomb target sites and to protect active genes from aberrant silencing. BAP1 and ASXL1, subunits that form active PR-DUB, are among the most frequently mutated epigenetic factors in human cancers, underscoring their biological importance. How PR-DUB achieves specificity for H2AK119Ub to regulate Polycomb silencing is unknown, and the mechanisms of most of the mutations in BAP1 and ASXL1 found in cancer have not been established. Here we determine a cryo-EM structure of human BAP1 bound to the ASXL1 DEUBAD domain in complex with a H2AK119Ub nucleosome. Our structural, biochemical, and cellular data reveal the molecular interactions of BAP1 and ASXL1 with histones and DNA that are critical for remodeling the nucleosome and thus establishing specificity for H2AK119Ub. These results further provide a molecular explanation for how >50 mutations in BAP1 and ASXL1 found in cancer can dysregulate H2AK119Ub deubiquitination, providing new insight into understanding cancer etiology.
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spelling pubmed-99801322023-03-03 Structural basis of histone H2A lysine 119 deubiquitination by Polycomb Repressive Deubiquitinase BAP1/ASXL1 Thomas, Jonathan F. Valencia-Sánchez, Marco Igor Tamburri, Simone Gloor, Susan L. Rustichelli, Samantha Godínez-López, Victoria De Ioannes, Pablo Lee, Rachel Abini-Agbomson, Stephen Gretarsson, Kristjan Burg, Jonathan M. Hickman, Allison R. Sun, Lu Gopinath, Saarang Taylor, Hailey Meiners, Matthew J. Cheek, Marcus A. Rice, William Nudler, Evgeny Lu, Chao Keogh, Michael-Christopher Pasini, Diego Armache, Karim-Jean bioRxiv Article The maintenance of gene expression patterns during metazoan development is achieved by the actions of Polycomb group (PcG) complexes. An essential modification marking silenced genes is monoubiquitination of histone H2A lysine 119 (H2AK119Ub) deposited by the E3 ubiquitin ligase activity of the non-canonical Polycomb Repressive Complex 1. The Polycomb Repressive Deubiquitinase (PR-DUB) complex cleaves monoubiquitin from histone H2A lysine 119 (H2AK119Ub) to restrict focal H2AK119Ub at Polycomb target sites and to protect active genes from aberrant silencing. BAP1 and ASXL1, subunits that form active PR-DUB, are among the most frequently mutated epigenetic factors in human cancers, underscoring their biological importance. How PR-DUB achieves specificity for H2AK119Ub to regulate Polycomb silencing is unknown, and the mechanisms of most of the mutations in BAP1 and ASXL1 found in cancer have not been established. Here we determine a cryo-EM structure of human BAP1 bound to the ASXL1 DEUBAD domain in complex with a H2AK119Ub nucleosome. Our structural, biochemical, and cellular data reveal the molecular interactions of BAP1 and ASXL1 with histones and DNA that are critical for remodeling the nucleosome and thus establishing specificity for H2AK119Ub. These results further provide a molecular explanation for how >50 mutations in BAP1 and ASXL1 found in cancer can dysregulate H2AK119Ub deubiquitination, providing new insight into understanding cancer etiology. Cold Spring Harbor Laboratory 2023-02-23 /pmc/articles/PMC9980132/ /pubmed/36865140 http://dx.doi.org/10.1101/2023.02.23.529554 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which allows reusers to copy and distribute the material in any medium or format in unadapted form only, for noncommercial purposes only, and only so long as attribution is given to the creator.
spellingShingle Article
Thomas, Jonathan F.
Valencia-Sánchez, Marco Igor
Tamburri, Simone
Gloor, Susan L.
Rustichelli, Samantha
Godínez-López, Victoria
De Ioannes, Pablo
Lee, Rachel
Abini-Agbomson, Stephen
Gretarsson, Kristjan
Burg, Jonathan M.
Hickman, Allison R.
Sun, Lu
Gopinath, Saarang
Taylor, Hailey
Meiners, Matthew J.
Cheek, Marcus A.
Rice, William
Nudler, Evgeny
Lu, Chao
Keogh, Michael-Christopher
Pasini, Diego
Armache, Karim-Jean
Structural basis of histone H2A lysine 119 deubiquitination by Polycomb Repressive Deubiquitinase BAP1/ASXL1
title Structural basis of histone H2A lysine 119 deubiquitination by Polycomb Repressive Deubiquitinase BAP1/ASXL1
title_full Structural basis of histone H2A lysine 119 deubiquitination by Polycomb Repressive Deubiquitinase BAP1/ASXL1
title_fullStr Structural basis of histone H2A lysine 119 deubiquitination by Polycomb Repressive Deubiquitinase BAP1/ASXL1
title_full_unstemmed Structural basis of histone H2A lysine 119 deubiquitination by Polycomb Repressive Deubiquitinase BAP1/ASXL1
title_short Structural basis of histone H2A lysine 119 deubiquitination by Polycomb Repressive Deubiquitinase BAP1/ASXL1
title_sort structural basis of histone h2a lysine 119 deubiquitination by polycomb repressive deubiquitinase bap1/asxl1
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9980132/
https://www.ncbi.nlm.nih.gov/pubmed/36865140
http://dx.doi.org/10.1101/2023.02.23.529554
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