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Genomic alterations in high-risk chronic lymphocytic leukemia frequently affect cell cycle key regulators and NOTCH1-regulated transcription

To identify genomic alterations contributing to the pathogenesis of high-risk chronic lymphocytic leukemia (CLL) beyond the well-established role of TP53 aberrations, we comprehensively analyzed 75 relapsed/refractory and 71 treatment-naïve high-risk cases from prospective clinical trials by single...

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Autores principales: Edelmann, Jennifer, Holzmann, Karlheinz, Tausch, Eugen, Saunderson, Emily A., Jebaraj, Billy M. C., Steinbrecher, Daniela, Dolnik, Anna, Blätte, Tamara J., Landau, Dan A., Saub, Jenny, Estenfelder, Sven, Ibach, Stefan, Cymbalista, Florence, Leblond, Veronique, Delmer, Alain, Bahlo, Jasmin, Robrecht, Sandra, Fischer, Kirsten, Goede, Valentin, Bullinger, Lars, Wu, Catherine J., Mertens, Daniel, Ficz, Gabriella, Gribben, John G., Hallek, Michael, Döhner, Hartmut, Stilgenbauer, Stephan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ferrata Storti Foundation 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7193490/
https://www.ncbi.nlm.nih.gov/pubmed/31467127
http://dx.doi.org/10.3324/haematol.2019.217307
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author Edelmann, Jennifer
Holzmann, Karlheinz
Tausch, Eugen
Saunderson, Emily A.
Jebaraj, Billy M. C.
Steinbrecher, Daniela
Dolnik, Anna
Blätte, Tamara J.
Landau, Dan A.
Saub, Jenny
Estenfelder, Sven
Ibach, Stefan
Cymbalista, Florence
Leblond, Veronique
Delmer, Alain
Bahlo, Jasmin
Robrecht, Sandra
Fischer, Kirsten
Goede, Valentin
Bullinger, Lars
Wu, Catherine J.
Mertens, Daniel
Ficz, Gabriella
Gribben, John G.
Hallek, Michael
Döhner, Hartmut
Stilgenbauer, Stephan
author_facet Edelmann, Jennifer
Holzmann, Karlheinz
Tausch, Eugen
Saunderson, Emily A.
Jebaraj, Billy M. C.
Steinbrecher, Daniela
Dolnik, Anna
Blätte, Tamara J.
Landau, Dan A.
Saub, Jenny
Estenfelder, Sven
Ibach, Stefan
Cymbalista, Florence
Leblond, Veronique
Delmer, Alain
Bahlo, Jasmin
Robrecht, Sandra
Fischer, Kirsten
Goede, Valentin
Bullinger, Lars
Wu, Catherine J.
Mertens, Daniel
Ficz, Gabriella
Gribben, John G.
Hallek, Michael
Döhner, Hartmut
Stilgenbauer, Stephan
author_sort Edelmann, Jennifer
collection PubMed
description To identify genomic alterations contributing to the pathogenesis of high-risk chronic lymphocytic leukemia (CLL) beyond the well-established role of TP53 aberrations, we comprehensively analyzed 75 relapsed/refractory and 71 treatment-naïve high-risk cases from prospective clinical trials by single nucleotide polymorphism arrays and targeted next-generation sequencing. Increased genomic complexity was a hallmark of relapsed/refractory and treatment-naïve high-risk CLL. In relapsed/refractory cases previously exposed to the selective pressure of chemo(immuno)therapy, gain(8)(q24.21) and del(9)(p21.3) were particularly enriched. Both alterations affect key regulators of cell-cycle progression, namely MYC and CDKN2A/B. While homozygous CDKN2A/B loss has been directly associated with Richter transformation, we did not find this association for heterozygous loss of CDKN2A/B. Gains in 8q24.21 were either focal gains in a MYC enhancer region or large gains affecting the MYC locus, but only the latter type was highly enriched in relapsed/refractory CLL (17%). In addition to a high frequency of NOTCH1 mutations (23%), we found recurrent genetic alterations in SPEN (4% mutated), RBPJ (8% deleted) and SNW1 (8% deleted), all affecting a protein complex that represses transcription of NOTCH1 target genes. We investigated the functional impact of these alterations on HES1, DTX1 and MYC gene transcription and found derepression of these NOTCH1 target genes particularly with SPEN mutations. In summary, we provide new insights into the genomic architecture of high-risk CLL, define novel recurrent DNA copy number alterations and refine knowledge on del(9p), gain(8q) and alterations affecting NOTCH1 signaling. This study was registered at ClinicalTrials.gov with number NCT01392079.
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spelling pubmed-71934902020-05-11 Genomic alterations in high-risk chronic lymphocytic leukemia frequently affect cell cycle key regulators and NOTCH1-regulated transcription Edelmann, Jennifer Holzmann, Karlheinz Tausch, Eugen Saunderson, Emily A. Jebaraj, Billy M. C. Steinbrecher, Daniela Dolnik, Anna Blätte, Tamara J. Landau, Dan A. Saub, Jenny Estenfelder, Sven Ibach, Stefan Cymbalista, Florence Leblond, Veronique Delmer, Alain Bahlo, Jasmin Robrecht, Sandra Fischer, Kirsten Goede, Valentin Bullinger, Lars Wu, Catherine J. Mertens, Daniel Ficz, Gabriella Gribben, John G. Hallek, Michael Döhner, Hartmut Stilgenbauer, Stephan Haematologica Articles To identify genomic alterations contributing to the pathogenesis of high-risk chronic lymphocytic leukemia (CLL) beyond the well-established role of TP53 aberrations, we comprehensively analyzed 75 relapsed/refractory and 71 treatment-naïve high-risk cases from prospective clinical trials by single nucleotide polymorphism arrays and targeted next-generation sequencing. Increased genomic complexity was a hallmark of relapsed/refractory and treatment-naïve high-risk CLL. In relapsed/refractory cases previously exposed to the selective pressure of chemo(immuno)therapy, gain(8)(q24.21) and del(9)(p21.3) were particularly enriched. Both alterations affect key regulators of cell-cycle progression, namely MYC and CDKN2A/B. While homozygous CDKN2A/B loss has been directly associated with Richter transformation, we did not find this association for heterozygous loss of CDKN2A/B. Gains in 8q24.21 were either focal gains in a MYC enhancer region or large gains affecting the MYC locus, but only the latter type was highly enriched in relapsed/refractory CLL (17%). In addition to a high frequency of NOTCH1 mutations (23%), we found recurrent genetic alterations in SPEN (4% mutated), RBPJ (8% deleted) and SNW1 (8% deleted), all affecting a protein complex that represses transcription of NOTCH1 target genes. We investigated the functional impact of these alterations on HES1, DTX1 and MYC gene transcription and found derepression of these NOTCH1 target genes particularly with SPEN mutations. In summary, we provide new insights into the genomic architecture of high-risk CLL, define novel recurrent DNA copy number alterations and refine knowledge on del(9p), gain(8q) and alterations affecting NOTCH1 signaling. This study was registered at ClinicalTrials.gov with number NCT01392079. Ferrata Storti Foundation 2020-05 /pmc/articles/PMC7193490/ /pubmed/31467127 http://dx.doi.org/10.3324/haematol.2019.217307 Text en Copyright© 2020 Ferrata Storti Foundation Material published in Haematologica is covered by copyright. All rights are reserved to the Ferrata Storti Foundation. Use of published material is allowed under the following terms and conditions: https://creativecommons.org/licenses/by-nc/4.0/legalcode. Copies of published material are allowed for personal or internal use. Sharing published material for non-commercial purposes is subject to the following conditions: https://creativecommons.org/licenses/by-nc/4.0/legalcode, sect. 3. Reproducing and sharing published material for commercial purposes is not allowed without permission in writing from the publisher.
spellingShingle Articles
Edelmann, Jennifer
Holzmann, Karlheinz
Tausch, Eugen
Saunderson, Emily A.
Jebaraj, Billy M. C.
Steinbrecher, Daniela
Dolnik, Anna
Blätte, Tamara J.
Landau, Dan A.
Saub, Jenny
Estenfelder, Sven
Ibach, Stefan
Cymbalista, Florence
Leblond, Veronique
Delmer, Alain
Bahlo, Jasmin
Robrecht, Sandra
Fischer, Kirsten
Goede, Valentin
Bullinger, Lars
Wu, Catherine J.
Mertens, Daniel
Ficz, Gabriella
Gribben, John G.
Hallek, Michael
Döhner, Hartmut
Stilgenbauer, Stephan
Genomic alterations in high-risk chronic lymphocytic leukemia frequently affect cell cycle key regulators and NOTCH1-regulated transcription
title Genomic alterations in high-risk chronic lymphocytic leukemia frequently affect cell cycle key regulators and NOTCH1-regulated transcription
title_full Genomic alterations in high-risk chronic lymphocytic leukemia frequently affect cell cycle key regulators and NOTCH1-regulated transcription
title_fullStr Genomic alterations in high-risk chronic lymphocytic leukemia frequently affect cell cycle key regulators and NOTCH1-regulated transcription
title_full_unstemmed Genomic alterations in high-risk chronic lymphocytic leukemia frequently affect cell cycle key regulators and NOTCH1-regulated transcription
title_short Genomic alterations in high-risk chronic lymphocytic leukemia frequently affect cell cycle key regulators and NOTCH1-regulated transcription
title_sort genomic alterations in high-risk chronic lymphocytic leukemia frequently affect cell cycle key regulators and notch1-regulated transcription
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7193490/
https://www.ncbi.nlm.nih.gov/pubmed/31467127
http://dx.doi.org/10.3324/haematol.2019.217307
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