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Mutational mechanisms shaping the coding and noncoding genome of germinal center derived B-cell lymphomas

B cells have the unique property to somatically alter their immunoglobulin (IG) genes by V(D)J recombination, somatic hypermutation (SHM) and class-switch recombination (CSR). Aberrant targeting of these mechanisms is implicated in lymphomagenesis, but the mutational processes are poorly understood....

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Autores principales: Hübschmann, Daniel, Kleinheinz, Kortine, Wagener, Rabea, Bernhart, Stephan H., López, Cristina, Toprak, Umut H., Sungalee, Stephanie, Ishaque, Naveed, Kretzmer, Helene, Kreuz, Markus, Waszak, Sebastian M., Paramasivam, Nagarajan, Ammerpohl, Ole, Aukema, Sietse M., Beekman, Renée, Bergmann, Anke K., Bieg, Matthias, Binder, Hans, Borkhardt, Arndt, Borst, Christoph, Brors, Benedikt, Bruns, Philipp, Carrillo de Santa Pau, Enrique, Claviez, Alexander, Doose, Gero, Haake, Andrea, Karsch, Dennis, Haas, Siegfried, Hansmann, Martin-Leo, Hoell, Jessica I., Hovestadt, Volker, Huang, Bingding, Hummel, Michael, Jäger-Schmidt, Christina, Kerssemakers, Jules N. A., Korbel, Jan O., Kube, Dieter, Lawerenz, Chris, Lenze, Dido, Martens, Joost H. A., Ott, German, Radlwimmer, Bernhard, Reisinger, Eva, Richter, Julia, Rico, Daniel, Rosenstiel, Philip, Rosenwald, Andreas, Schillhabel, Markus, Stilgenbauer, Stephan, Stadler, Peter F., Martín-Subero, José I., Szczepanowski, Monika, Warsow, Gregor, Weniger, Marc A., Zapatka, Marc, Valencia, Alfonso, Stunnenberg, Hendrik G., Lichter, Peter, Möller, Peter, Loeffler, Markus, Eils, Roland, Klapper, Wolfram, Hoffmann, Steve, Trümper, Lorenz, Küppers, Ralf, Schlesner, Matthias, Siebert, Reiner
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8257491/
https://www.ncbi.nlm.nih.gov/pubmed/33953289
http://dx.doi.org/10.1038/s41375-021-01251-z
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author Hübschmann, Daniel
Kleinheinz, Kortine
Wagener, Rabea
Bernhart, Stephan H.
López, Cristina
Toprak, Umut H.
Sungalee, Stephanie
Ishaque, Naveed
Kretzmer, Helene
Kreuz, Markus
Waszak, Sebastian M.
Paramasivam, Nagarajan
Ammerpohl, Ole
Aukema, Sietse M.
Beekman, Renée
Bergmann, Anke K.
Bieg, Matthias
Binder, Hans
Borkhardt, Arndt
Borst, Christoph
Brors, Benedikt
Bruns, Philipp
Carrillo de Santa Pau, Enrique
Claviez, Alexander
Doose, Gero
Haake, Andrea
Karsch, Dennis
Haas, Siegfried
Hansmann, Martin-Leo
Hoell, Jessica I.
Hovestadt, Volker
Huang, Bingding
Hummel, Michael
Jäger-Schmidt, Christina
Kerssemakers, Jules N. A.
Korbel, Jan O.
Kube, Dieter
Lawerenz, Chris
Lenze, Dido
Martens, Joost H. A.
Ott, German
Radlwimmer, Bernhard
Reisinger, Eva
Richter, Julia
Rico, Daniel
Rosenstiel, Philip
Rosenwald, Andreas
Schillhabel, Markus
Stilgenbauer, Stephan
Stadler, Peter F.
Martín-Subero, José I.
Szczepanowski, Monika
Warsow, Gregor
Weniger, Marc A.
Zapatka, Marc
Valencia, Alfonso
Stunnenberg, Hendrik G.
Lichter, Peter
Möller, Peter
Loeffler, Markus
Eils, Roland
Klapper, Wolfram
Hoffmann, Steve
Trümper, Lorenz
Küppers, Ralf
Schlesner, Matthias
Siebert, Reiner
author_facet Hübschmann, Daniel
Kleinheinz, Kortine
Wagener, Rabea
Bernhart, Stephan H.
López, Cristina
Toprak, Umut H.
Sungalee, Stephanie
Ishaque, Naveed
Kretzmer, Helene
Kreuz, Markus
Waszak, Sebastian M.
Paramasivam, Nagarajan
Ammerpohl, Ole
Aukema, Sietse M.
Beekman, Renée
Bergmann, Anke K.
Bieg, Matthias
Binder, Hans
Borkhardt, Arndt
Borst, Christoph
Brors, Benedikt
Bruns, Philipp
Carrillo de Santa Pau, Enrique
Claviez, Alexander
Doose, Gero
Haake, Andrea
Karsch, Dennis
Haas, Siegfried
Hansmann, Martin-Leo
Hoell, Jessica I.
Hovestadt, Volker
Huang, Bingding
Hummel, Michael
Jäger-Schmidt, Christina
Kerssemakers, Jules N. A.
Korbel, Jan O.
Kube, Dieter
Lawerenz, Chris
Lenze, Dido
Martens, Joost H. A.
Ott, German
Radlwimmer, Bernhard
Reisinger, Eva
Richter, Julia
Rico, Daniel
Rosenstiel, Philip
Rosenwald, Andreas
Schillhabel, Markus
Stilgenbauer, Stephan
Stadler, Peter F.
Martín-Subero, José I.
Szczepanowski, Monika
Warsow, Gregor
Weniger, Marc A.
Zapatka, Marc
Valencia, Alfonso
Stunnenberg, Hendrik G.
Lichter, Peter
Möller, Peter
Loeffler, Markus
Eils, Roland
Klapper, Wolfram
Hoffmann, Steve
Trümper, Lorenz
Küppers, Ralf
Schlesner, Matthias
Siebert, Reiner
author_sort Hübschmann, Daniel
collection PubMed
description B cells have the unique property to somatically alter their immunoglobulin (IG) genes by V(D)J recombination, somatic hypermutation (SHM) and class-switch recombination (CSR). Aberrant targeting of these mechanisms is implicated in lymphomagenesis, but the mutational processes are poorly understood. By performing whole genome and transcriptome sequencing of 181 germinal center derived B-cell lymphomas (gcBCL) we identified distinct mutational signatures linked to SHM and CSR. We show that not only SHM, but presumably also CSR causes off-target mutations in non-IG genes. Kataegis clusters with high mutational density mainly affected early replicating regions and were enriched for SHM- and CSR-mediated off-target mutations. Moreover, they often co-occurred in loci physically interacting in the nucleus, suggesting that mutation hotspots promote increased mutation targeting of spatially co-localized loci (termed hypermutation by proxy). Only around 1% of somatic small variants were in protein coding sequences, but in about half of the driver genes, a contribution of B-cell specific mutational processes to their mutations was found. The B-cell-specific mutational processes contribute to both lymphoma initiation and intratumoral heterogeneity. Overall, we demonstrate that mutational processes involved in the development of gcBCL are more complex than previously appreciated, and that B cell-specific mutational processes contribute via diverse mechanisms to lymphomagenesis.
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spelling pubmed-82574912021-07-23 Mutational mechanisms shaping the coding and noncoding genome of germinal center derived B-cell lymphomas Hübschmann, Daniel Kleinheinz, Kortine Wagener, Rabea Bernhart, Stephan H. López, Cristina Toprak, Umut H. Sungalee, Stephanie Ishaque, Naveed Kretzmer, Helene Kreuz, Markus Waszak, Sebastian M. Paramasivam, Nagarajan Ammerpohl, Ole Aukema, Sietse M. Beekman, Renée Bergmann, Anke K. Bieg, Matthias Binder, Hans Borkhardt, Arndt Borst, Christoph Brors, Benedikt Bruns, Philipp Carrillo de Santa Pau, Enrique Claviez, Alexander Doose, Gero Haake, Andrea Karsch, Dennis Haas, Siegfried Hansmann, Martin-Leo Hoell, Jessica I. Hovestadt, Volker Huang, Bingding Hummel, Michael Jäger-Schmidt, Christina Kerssemakers, Jules N. A. Korbel, Jan O. Kube, Dieter Lawerenz, Chris Lenze, Dido Martens, Joost H. A. Ott, German Radlwimmer, Bernhard Reisinger, Eva Richter, Julia Rico, Daniel Rosenstiel, Philip Rosenwald, Andreas Schillhabel, Markus Stilgenbauer, Stephan Stadler, Peter F. Martín-Subero, José I. Szczepanowski, Monika Warsow, Gregor Weniger, Marc A. Zapatka, Marc Valencia, Alfonso Stunnenberg, Hendrik G. Lichter, Peter Möller, Peter Loeffler, Markus Eils, Roland Klapper, Wolfram Hoffmann, Steve Trümper, Lorenz Küppers, Ralf Schlesner, Matthias Siebert, Reiner Leukemia Article B cells have the unique property to somatically alter their immunoglobulin (IG) genes by V(D)J recombination, somatic hypermutation (SHM) and class-switch recombination (CSR). Aberrant targeting of these mechanisms is implicated in lymphomagenesis, but the mutational processes are poorly understood. By performing whole genome and transcriptome sequencing of 181 germinal center derived B-cell lymphomas (gcBCL) we identified distinct mutational signatures linked to SHM and CSR. We show that not only SHM, but presumably also CSR causes off-target mutations in non-IG genes. Kataegis clusters with high mutational density mainly affected early replicating regions and were enriched for SHM- and CSR-mediated off-target mutations. Moreover, they often co-occurred in loci physically interacting in the nucleus, suggesting that mutation hotspots promote increased mutation targeting of spatially co-localized loci (termed hypermutation by proxy). Only around 1% of somatic small variants were in protein coding sequences, but in about half of the driver genes, a contribution of B-cell specific mutational processes to their mutations was found. The B-cell-specific mutational processes contribute to both lymphoma initiation and intratumoral heterogeneity. Overall, we demonstrate that mutational processes involved in the development of gcBCL are more complex than previously appreciated, and that B cell-specific mutational processes contribute via diverse mechanisms to lymphomagenesis. Nature Publishing Group UK 2021-05-05 2021 /pmc/articles/PMC8257491/ /pubmed/33953289 http://dx.doi.org/10.1038/s41375-021-01251-z Text en © The Author(s) 2021 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Hübschmann, Daniel
Kleinheinz, Kortine
Wagener, Rabea
Bernhart, Stephan H.
López, Cristina
Toprak, Umut H.
Sungalee, Stephanie
Ishaque, Naveed
Kretzmer, Helene
Kreuz, Markus
Waszak, Sebastian M.
Paramasivam, Nagarajan
Ammerpohl, Ole
Aukema, Sietse M.
Beekman, Renée
Bergmann, Anke K.
Bieg, Matthias
Binder, Hans
Borkhardt, Arndt
Borst, Christoph
Brors, Benedikt
Bruns, Philipp
Carrillo de Santa Pau, Enrique
Claviez, Alexander
Doose, Gero
Haake, Andrea
Karsch, Dennis
Haas, Siegfried
Hansmann, Martin-Leo
Hoell, Jessica I.
Hovestadt, Volker
Huang, Bingding
Hummel, Michael
Jäger-Schmidt, Christina
Kerssemakers, Jules N. A.
Korbel, Jan O.
Kube, Dieter
Lawerenz, Chris
Lenze, Dido
Martens, Joost H. A.
Ott, German
Radlwimmer, Bernhard
Reisinger, Eva
Richter, Julia
Rico, Daniel
Rosenstiel, Philip
Rosenwald, Andreas
Schillhabel, Markus
Stilgenbauer, Stephan
Stadler, Peter F.
Martín-Subero, José I.
Szczepanowski, Monika
Warsow, Gregor
Weniger, Marc A.
Zapatka, Marc
Valencia, Alfonso
Stunnenberg, Hendrik G.
Lichter, Peter
Möller, Peter
Loeffler, Markus
Eils, Roland
Klapper, Wolfram
Hoffmann, Steve
Trümper, Lorenz
Küppers, Ralf
Schlesner, Matthias
Siebert, Reiner
Mutational mechanisms shaping the coding and noncoding genome of germinal center derived B-cell lymphomas
title Mutational mechanisms shaping the coding and noncoding genome of germinal center derived B-cell lymphomas
title_full Mutational mechanisms shaping the coding and noncoding genome of germinal center derived B-cell lymphomas
title_fullStr Mutational mechanisms shaping the coding and noncoding genome of germinal center derived B-cell lymphomas
title_full_unstemmed Mutational mechanisms shaping the coding and noncoding genome of germinal center derived B-cell lymphomas
title_short Mutational mechanisms shaping the coding and noncoding genome of germinal center derived B-cell lymphomas
title_sort mutational mechanisms shaping the coding and noncoding genome of germinal center derived b-cell lymphomas
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8257491/
https://www.ncbi.nlm.nih.gov/pubmed/33953289
http://dx.doi.org/10.1038/s41375-021-01251-z
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