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Deep targeted sequencing in pediatric acute lymphoblastic leukemia unveils distinct mutational patterns between genetic subtypes and novel relapse-associated genes

To characterize the mutational patterns of acute lymphoblastic leukemia (ALL) we performed deep next generation sequencing of 872 cancer genes in 172 diagnostic and 24 relapse samples from 172 pediatric ALL patients. We found an overall greater mutational burden and more driver mutations in T-cell A...

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Autores principales: Lindqvist, C. Mårten, Lundmark, Anders, Nordlund, Jessica, Freyhult, Eva, Ekman, Diana, Almlöf, Jonas Carlsson, Raine, Amanda, Övernäs, Elin, Abrahamsson, Jonas, Frost, Britt-Marie, Grandér, Dan, Heyman, Mats, Palle, Josefine, Forestier, Erik, Lönnerholm, Gudmar, Berglund, Eva C., Syvänen, Ann-Christine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5325426/
https://www.ncbi.nlm.nih.gov/pubmed/27590521
http://dx.doi.org/10.18632/oncotarget.11773
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author Lindqvist, C. Mårten
Lundmark, Anders
Nordlund, Jessica
Freyhult, Eva
Ekman, Diana
Almlöf, Jonas Carlsson
Raine, Amanda
Övernäs, Elin
Abrahamsson, Jonas
Frost, Britt-Marie
Grandér, Dan
Heyman, Mats
Palle, Josefine
Forestier, Erik
Lönnerholm, Gudmar
Berglund, Eva C.
Syvänen, Ann-Christine
author_facet Lindqvist, C. Mårten
Lundmark, Anders
Nordlund, Jessica
Freyhult, Eva
Ekman, Diana
Almlöf, Jonas Carlsson
Raine, Amanda
Övernäs, Elin
Abrahamsson, Jonas
Frost, Britt-Marie
Grandér, Dan
Heyman, Mats
Palle, Josefine
Forestier, Erik
Lönnerholm, Gudmar
Berglund, Eva C.
Syvänen, Ann-Christine
author_sort Lindqvist, C. Mårten
collection PubMed
description To characterize the mutational patterns of acute lymphoblastic leukemia (ALL) we performed deep next generation sequencing of 872 cancer genes in 172 diagnostic and 24 relapse samples from 172 pediatric ALL patients. We found an overall greater mutational burden and more driver mutations in T-cell ALL (T-ALL) patients compared to B-cell precursor ALL (BCP-ALL) patients. In addition, the majority of the mutations in T-ALL had occurred in the original leukemic clone, while most of the mutations in BCP-ALL were subclonal. BCP-ALL patients carrying any of the recurrent translocations ETV6-RUNX1, BCR-ABL or TCF3-PBX1 harbored few mutations in driver genes compared to other BCP-ALL patients. Specifically in BCP-ALL, we identified ATRX as a novel putative driver gene and uncovered an association between somatic mutations in the Notch signaling pathway at ALL diagnosis and increased risk of relapse. Furthermore, we identified EP300, ARID1A and SH2B3 as relapse-associated genes. The genes highlighted in our study were frequently involved in epigenetic regulation, associated with germline susceptibility to ALL, and present in minor subclones at diagnosis that became dominant at relapse. We observed a high degree of clonal heterogeneity and evolution between diagnosis and relapse in both BCP-ALL and T-ALL, which could have implications for the treatment efficiency.
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spelling pubmed-53254262017-03-23 Deep targeted sequencing in pediatric acute lymphoblastic leukemia unveils distinct mutational patterns between genetic subtypes and novel relapse-associated genes Lindqvist, C. Mårten Lundmark, Anders Nordlund, Jessica Freyhult, Eva Ekman, Diana Almlöf, Jonas Carlsson Raine, Amanda Övernäs, Elin Abrahamsson, Jonas Frost, Britt-Marie Grandér, Dan Heyman, Mats Palle, Josefine Forestier, Erik Lönnerholm, Gudmar Berglund, Eva C. Syvänen, Ann-Christine Oncotarget Research Paper To characterize the mutational patterns of acute lymphoblastic leukemia (ALL) we performed deep next generation sequencing of 872 cancer genes in 172 diagnostic and 24 relapse samples from 172 pediatric ALL patients. We found an overall greater mutational burden and more driver mutations in T-cell ALL (T-ALL) patients compared to B-cell precursor ALL (BCP-ALL) patients. In addition, the majority of the mutations in T-ALL had occurred in the original leukemic clone, while most of the mutations in BCP-ALL were subclonal. BCP-ALL patients carrying any of the recurrent translocations ETV6-RUNX1, BCR-ABL or TCF3-PBX1 harbored few mutations in driver genes compared to other BCP-ALL patients. Specifically in BCP-ALL, we identified ATRX as a novel putative driver gene and uncovered an association between somatic mutations in the Notch signaling pathway at ALL diagnosis and increased risk of relapse. Furthermore, we identified EP300, ARID1A and SH2B3 as relapse-associated genes. The genes highlighted in our study were frequently involved in epigenetic regulation, associated with germline susceptibility to ALL, and present in minor subclones at diagnosis that became dominant at relapse. We observed a high degree of clonal heterogeneity and evolution between diagnosis and relapse in both BCP-ALL and T-ALL, which could have implications for the treatment efficiency. Impact Journals LLC 2016-08-31 /pmc/articles/PMC5325426/ /pubmed/27590521 http://dx.doi.org/10.18632/oncotarget.11773 Text en Copyright: © 2016 Lindqvist et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Lindqvist, C. Mårten
Lundmark, Anders
Nordlund, Jessica
Freyhult, Eva
Ekman, Diana
Almlöf, Jonas Carlsson
Raine, Amanda
Övernäs, Elin
Abrahamsson, Jonas
Frost, Britt-Marie
Grandér, Dan
Heyman, Mats
Palle, Josefine
Forestier, Erik
Lönnerholm, Gudmar
Berglund, Eva C.
Syvänen, Ann-Christine
Deep targeted sequencing in pediatric acute lymphoblastic leukemia unveils distinct mutational patterns between genetic subtypes and novel relapse-associated genes
title Deep targeted sequencing in pediatric acute lymphoblastic leukemia unveils distinct mutational patterns between genetic subtypes and novel relapse-associated genes
title_full Deep targeted sequencing in pediatric acute lymphoblastic leukemia unveils distinct mutational patterns between genetic subtypes and novel relapse-associated genes
title_fullStr Deep targeted sequencing in pediatric acute lymphoblastic leukemia unveils distinct mutational patterns between genetic subtypes and novel relapse-associated genes
title_full_unstemmed Deep targeted sequencing in pediatric acute lymphoblastic leukemia unveils distinct mutational patterns between genetic subtypes and novel relapse-associated genes
title_short Deep targeted sequencing in pediatric acute lymphoblastic leukemia unveils distinct mutational patterns between genetic subtypes and novel relapse-associated genes
title_sort deep targeted sequencing in pediatric acute lymphoblastic leukemia unveils distinct mutational patterns between genetic subtypes and novel relapse-associated genes
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5325426/
https://www.ncbi.nlm.nih.gov/pubmed/27590521
http://dx.doi.org/10.18632/oncotarget.11773
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