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KMT2D acetylation by CREBBP reveals a cooperative functional interaction at enhancers in normal and malignant germinal center B cells

Heterozygous inactivating mutations of the KMT2D methyltransferase and the CREBBP acetyltransferase are among the most common genetic alterations in B cell lymphoma and co-occur in 40 to 60% of follicular lymphoma (FL) and 30% of EZB/C3 diffuse large B cell lymphoma (DLBCL) cases, suggesting they ma...

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Autores principales: Vlasevska, Sofija, Garcia-Ibanez, Laura, Duval, Romain, Holmes, Antony B., Jahan, Rahat, Cai, Bowen, Kim, Andrew, Mo, Tongwei, Basso, Katia, Soni, Rajesh K., Bhagat, Govind, Dalla-Favera, Riccardo, Pasqualucci, Laura
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10089214/
https://www.ncbi.nlm.nih.gov/pubmed/36893259
http://dx.doi.org/10.1073/pnas.2218330120
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author Vlasevska, Sofija
Garcia-Ibanez, Laura
Duval, Romain
Holmes, Antony B.
Jahan, Rahat
Cai, Bowen
Kim, Andrew
Mo, Tongwei
Basso, Katia
Soni, Rajesh K.
Bhagat, Govind
Dalla-Favera, Riccardo
Pasqualucci, Laura
author_facet Vlasevska, Sofija
Garcia-Ibanez, Laura
Duval, Romain
Holmes, Antony B.
Jahan, Rahat
Cai, Bowen
Kim, Andrew
Mo, Tongwei
Basso, Katia
Soni, Rajesh K.
Bhagat, Govind
Dalla-Favera, Riccardo
Pasqualucci, Laura
author_sort Vlasevska, Sofija
collection PubMed
description Heterozygous inactivating mutations of the KMT2D methyltransferase and the CREBBP acetyltransferase are among the most common genetic alterations in B cell lymphoma and co-occur in 40 to 60% of follicular lymphoma (FL) and 30% of EZB/C3 diffuse large B cell lymphoma (DLBCL) cases, suggesting they may be coselected. Here, we show that combined germinal center (GC)–specific haploinsufficiency of Crebbp and Kmt2d synergizes in vivo to promote the expansion of abnormally polarized GCs, a common preneoplastic event. These enzymes form a biochemical complex on select enhancers/superenhancers that are critical for the delivery of immune signals in the GC light zone and are only corrupted upon dual Crebbp/Kmt2d loss, both in mouse GC B cells and in human DLBCL. Moreover, CREBBP directly acetylates KMT2D in GC-derived B cells, and, consistently, its inactivation by FL/DLBCL-associated mutations abrogates its ability to catalyze KMT2D acetylation. Genetic and pharmacologic loss of CREBBP and the consequent decrease in KMT2D acetylation lead to reduced levels of H3K4me1, supporting a role for this posttranslational modification in modulating KMT2D activity. Our data identify a direct biochemical and functional interaction between CREBBP and KMT2D in the GC, with implications for their role as tumor suppressors in FL/DLBCL and for the development of precision medicine approaches targeting enhancer defects induced by their combined loss.
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spelling pubmed-100892142023-04-12 KMT2D acetylation by CREBBP reveals a cooperative functional interaction at enhancers in normal and malignant germinal center B cells Vlasevska, Sofija Garcia-Ibanez, Laura Duval, Romain Holmes, Antony B. Jahan, Rahat Cai, Bowen Kim, Andrew Mo, Tongwei Basso, Katia Soni, Rajesh K. Bhagat, Govind Dalla-Favera, Riccardo Pasqualucci, Laura Proc Natl Acad Sci U S A Biological Sciences Heterozygous inactivating mutations of the KMT2D methyltransferase and the CREBBP acetyltransferase are among the most common genetic alterations in B cell lymphoma and co-occur in 40 to 60% of follicular lymphoma (FL) and 30% of EZB/C3 diffuse large B cell lymphoma (DLBCL) cases, suggesting they may be coselected. Here, we show that combined germinal center (GC)–specific haploinsufficiency of Crebbp and Kmt2d synergizes in vivo to promote the expansion of abnormally polarized GCs, a common preneoplastic event. These enzymes form a biochemical complex on select enhancers/superenhancers that are critical for the delivery of immune signals in the GC light zone and are only corrupted upon dual Crebbp/Kmt2d loss, both in mouse GC B cells and in human DLBCL. Moreover, CREBBP directly acetylates KMT2D in GC-derived B cells, and, consistently, its inactivation by FL/DLBCL-associated mutations abrogates its ability to catalyze KMT2D acetylation. Genetic and pharmacologic loss of CREBBP and the consequent decrease in KMT2D acetylation lead to reduced levels of H3K4me1, supporting a role for this posttranslational modification in modulating KMT2D activity. Our data identify a direct biochemical and functional interaction between CREBBP and KMT2D in the GC, with implications for their role as tumor suppressors in FL/DLBCL and for the development of precision medicine approaches targeting enhancer defects induced by their combined loss. National Academy of Sciences 2023-03-09 2023-03-14 /pmc/articles/PMC10089214/ /pubmed/36893259 http://dx.doi.org/10.1073/pnas.2218330120 Text en Copyright © 2023 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by/4.0/This open access article is distributed under Creative Commons Attribution License 4.0 (CC BY) (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Biological Sciences
Vlasevska, Sofija
Garcia-Ibanez, Laura
Duval, Romain
Holmes, Antony B.
Jahan, Rahat
Cai, Bowen
Kim, Andrew
Mo, Tongwei
Basso, Katia
Soni, Rajesh K.
Bhagat, Govind
Dalla-Favera, Riccardo
Pasqualucci, Laura
KMT2D acetylation by CREBBP reveals a cooperative functional interaction at enhancers in normal and malignant germinal center B cells
title KMT2D acetylation by CREBBP reveals a cooperative functional interaction at enhancers in normal and malignant germinal center B cells
title_full KMT2D acetylation by CREBBP reveals a cooperative functional interaction at enhancers in normal and malignant germinal center B cells
title_fullStr KMT2D acetylation by CREBBP reveals a cooperative functional interaction at enhancers in normal and malignant germinal center B cells
title_full_unstemmed KMT2D acetylation by CREBBP reveals a cooperative functional interaction at enhancers in normal and malignant germinal center B cells
title_short KMT2D acetylation by CREBBP reveals a cooperative functional interaction at enhancers in normal and malignant germinal center B cells
title_sort kmt2d acetylation by crebbp reveals a cooperative functional interaction at enhancers in normal and malignant germinal center b cells
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10089214/
https://www.ncbi.nlm.nih.gov/pubmed/36893259
http://dx.doi.org/10.1073/pnas.2218330120
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