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Genomic complexity and dynamics of clonal evolution in childhood acute myeloid leukemia studied with whole-exome sequencing

Despite significant improvement in treatment of childhood acute myeloid leukemia (AML), 30% of patients experience disease recurrence, which is still the major cause of treatment failure and death in these patients. To investigate molecular mechanisms underlying relapse, we performed whole-exome seq...

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Autores principales: Masetti, Riccardo, Castelli, Ilaria, Astolfi, Annalisa, Bertuccio, Salvatore Nicola, Indio, Valentina, Togni, Marco, Belotti, Tamara, Serravalle, Salvatore, Tarantino, Giuseppe, Zecca, Marco, Pigazzi, Martina, Basso, Giuseppe, Pession, Andrea, Locatelli, Franco
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5302950/
https://www.ncbi.nlm.nih.gov/pubmed/27462774
http://dx.doi.org/10.18632/oncotarget.10778
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author Masetti, Riccardo
Castelli, Ilaria
Astolfi, Annalisa
Bertuccio, Salvatore Nicola
Indio, Valentina
Togni, Marco
Belotti, Tamara
Serravalle, Salvatore
Tarantino, Giuseppe
Zecca, Marco
Pigazzi, Martina
Basso, Giuseppe
Pession, Andrea
Locatelli, Franco
author_facet Masetti, Riccardo
Castelli, Ilaria
Astolfi, Annalisa
Bertuccio, Salvatore Nicola
Indio, Valentina
Togni, Marco
Belotti, Tamara
Serravalle, Salvatore
Tarantino, Giuseppe
Zecca, Marco
Pigazzi, Martina
Basso, Giuseppe
Pession, Andrea
Locatelli, Franco
author_sort Masetti, Riccardo
collection PubMed
description Despite significant improvement in treatment of childhood acute myeloid leukemia (AML), 30% of patients experience disease recurrence, which is still the major cause of treatment failure and death in these patients. To investigate molecular mechanisms underlying relapse, we performed whole-exome sequencing of diagnosis-relapse pairs and matched remission samples from 4 pediatric AML patients without recurrent cytogenetic alterations. Candidate driver mutations were selected for targeted deep sequencing at high coverage, suitable to detect small subclones (0.12%). BiCEBPα mutation was found to be stable and highly penetrant, representing a separate biological and clinical entity, unlike WT1 mutations, which were extremely unstable. Among the mutational patterns underlying relapse, we detected the acquisition of proliferative advantage by signaling activation (PTPN11 and FLT3-TKD mutations) and the increased resistance to apoptosis (hyperactivation of TYK2). We also found a previously undescribed feature of AML, consisting of a hypermutator phenotype caused by SETD2 inactivation. The consequent accumulation of new mutations promotes the adaptability of the leukemia, contributing to clonal selection. We report a novel ASXL3 mutation characterizing a very small subclone (<1%) present at diagnosis and undergoing expansion (60%) at relapse. Taken together, these findings provide molecular clues for designing optimal therapeutic strategies, in terms of target selection, adequate schedule design and reliable response-monitoring techniques.
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spelling pubmed-53029502017-02-13 Genomic complexity and dynamics of clonal evolution in childhood acute myeloid leukemia studied with whole-exome sequencing Masetti, Riccardo Castelli, Ilaria Astolfi, Annalisa Bertuccio, Salvatore Nicola Indio, Valentina Togni, Marco Belotti, Tamara Serravalle, Salvatore Tarantino, Giuseppe Zecca, Marco Pigazzi, Martina Basso, Giuseppe Pession, Andrea Locatelli, Franco Oncotarget Research Paper Despite significant improvement in treatment of childhood acute myeloid leukemia (AML), 30% of patients experience disease recurrence, which is still the major cause of treatment failure and death in these patients. To investigate molecular mechanisms underlying relapse, we performed whole-exome sequencing of diagnosis-relapse pairs and matched remission samples from 4 pediatric AML patients without recurrent cytogenetic alterations. Candidate driver mutations were selected for targeted deep sequencing at high coverage, suitable to detect small subclones (0.12%). BiCEBPα mutation was found to be stable and highly penetrant, representing a separate biological and clinical entity, unlike WT1 mutations, which were extremely unstable. Among the mutational patterns underlying relapse, we detected the acquisition of proliferative advantage by signaling activation (PTPN11 and FLT3-TKD mutations) and the increased resistance to apoptosis (hyperactivation of TYK2). We also found a previously undescribed feature of AML, consisting of a hypermutator phenotype caused by SETD2 inactivation. The consequent accumulation of new mutations promotes the adaptability of the leukemia, contributing to clonal selection. We report a novel ASXL3 mutation characterizing a very small subclone (<1%) present at diagnosis and undergoing expansion (60%) at relapse. Taken together, these findings provide molecular clues for designing optimal therapeutic strategies, in terms of target selection, adequate schedule design and reliable response-monitoring techniques. Impact Journals LLC 2016-07-22 /pmc/articles/PMC5302950/ /pubmed/27462774 http://dx.doi.org/10.18632/oncotarget.10778 Text en Copyright: © 2016 Masetti 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
Masetti, Riccardo
Castelli, Ilaria
Astolfi, Annalisa
Bertuccio, Salvatore Nicola
Indio, Valentina
Togni, Marco
Belotti, Tamara
Serravalle, Salvatore
Tarantino, Giuseppe
Zecca, Marco
Pigazzi, Martina
Basso, Giuseppe
Pession, Andrea
Locatelli, Franco
Genomic complexity and dynamics of clonal evolution in childhood acute myeloid leukemia studied with whole-exome sequencing
title Genomic complexity and dynamics of clonal evolution in childhood acute myeloid leukemia studied with whole-exome sequencing
title_full Genomic complexity and dynamics of clonal evolution in childhood acute myeloid leukemia studied with whole-exome sequencing
title_fullStr Genomic complexity and dynamics of clonal evolution in childhood acute myeloid leukemia studied with whole-exome sequencing
title_full_unstemmed Genomic complexity and dynamics of clonal evolution in childhood acute myeloid leukemia studied with whole-exome sequencing
title_short Genomic complexity and dynamics of clonal evolution in childhood acute myeloid leukemia studied with whole-exome sequencing
title_sort genomic complexity and dynamics of clonal evolution in childhood acute myeloid leukemia studied with whole-exome sequencing
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5302950/
https://www.ncbi.nlm.nih.gov/pubmed/27462774
http://dx.doi.org/10.18632/oncotarget.10778
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