Cargando…

Clonal heterogeneity of FLT3-ITD detected by high-throughput amplicon sequencing correlates with adverse prognosis in acute myeloid leukemia

In acute myeloid leukemia (AML), internal tandem duplications (ITDs) of FLT3 are frequent mutations associated with unfavorable prognosis. At diagnosis, the FLT3-ITD status is routinely assessed by fragment analysis, providing information about the length but not the position and sequence of the ITD...

Descripción completa

Detalles Bibliográficos
Autores principales: Schranz, Katrin, Hubmann, Max, Harin, Egor, Vosberg, Sebastian, Herold, Tobias, Metzeler, Klaus H., Rothenberg-Thurley, Maja, Janke, Hanna, Bräundl, Kathrin, Ksienzyk, Bianka, Batcha, Aarif M.N., Schaaf, Sebastian, Schneider, Stephanie, Bohlander, Stefan K., Görlich, Dennis, Berdel, Wolfgang E., Wörmann, Bernhard J., Braess, Jan, Krebs, Stefan, Hiddemann, Wolfgang, Mansmann, Ulrich, Spiekermann, Karsten, Greif, Philipp A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6059024/
https://www.ncbi.nlm.nih.gov/pubmed/30046393
http://dx.doi.org/10.18632/oncotarget.25729
_version_ 1783341803445944320
author Schranz, Katrin
Hubmann, Max
Harin, Egor
Vosberg, Sebastian
Herold, Tobias
Metzeler, Klaus H.
Rothenberg-Thurley, Maja
Janke, Hanna
Bräundl, Kathrin
Ksienzyk, Bianka
Batcha, Aarif M.N.
Schaaf, Sebastian
Schneider, Stephanie
Bohlander, Stefan K.
Görlich, Dennis
Berdel, Wolfgang E.
Wörmann, Bernhard J.
Braess, Jan
Krebs, Stefan
Hiddemann, Wolfgang
Mansmann, Ulrich
Spiekermann, Karsten
Greif, Philipp A.
author_facet Schranz, Katrin
Hubmann, Max
Harin, Egor
Vosberg, Sebastian
Herold, Tobias
Metzeler, Klaus H.
Rothenberg-Thurley, Maja
Janke, Hanna
Bräundl, Kathrin
Ksienzyk, Bianka
Batcha, Aarif M.N.
Schaaf, Sebastian
Schneider, Stephanie
Bohlander, Stefan K.
Görlich, Dennis
Berdel, Wolfgang E.
Wörmann, Bernhard J.
Braess, Jan
Krebs, Stefan
Hiddemann, Wolfgang
Mansmann, Ulrich
Spiekermann, Karsten
Greif, Philipp A.
author_sort Schranz, Katrin
collection PubMed
description In acute myeloid leukemia (AML), internal tandem duplications (ITDs) of FLT3 are frequent mutations associated with unfavorable prognosis. At diagnosis, the FLT3-ITD status is routinely assessed by fragment analysis, providing information about the length but not the position and sequence of the ITD. To overcome this limitation, we performed cDNA-based high-throughput amplicon sequencing (HTAS) in 250 FLT3-ITD positive AML patients, treated on German AML Cooperative Group (AMLCG) trials. FLT3-ITD status determined by routine diagnostics was confirmed by HTAS in 242 out of 250 patients (97%). The total number of ITDs detected by HTAS was higher than in routine diagnostics (n = 312 vs. n = 274). In particular, HTAS detected a higher number of ITDs per patient compared to fragment analysis, indicating higher sensitivity for subclonal ITDs. Patients with more than one ITD according to HTAS had a significantly shorter overall and relapse free survival. There was a close correlation between FLT3-ITD mRNA levels in fragment analysis and variant allele frequency in HTAS. However, the abundance of long ITDs (≥75nt) was underestimated by HTAS, as the size of the ITD affected the mappability of the corresponding sequence reads. In summary, this study demonstrates that HTAS is a feasible approach for FLT3-ITD detection in AML patients, delivering length, position, sequence and mutational burden of this alteration in a single assay with high sensitivity. Our findings provide insights into the clonal architecture of FLT3-ITD positive AML and have clinical implications.
format Online
Article
Text
id pubmed-6059024
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Impact Journals LLC
record_format MEDLINE/PubMed
spelling pubmed-60590242018-07-25 Clonal heterogeneity of FLT3-ITD detected by high-throughput amplicon sequencing correlates with adverse prognosis in acute myeloid leukemia Schranz, Katrin Hubmann, Max Harin, Egor Vosberg, Sebastian Herold, Tobias Metzeler, Klaus H. Rothenberg-Thurley, Maja Janke, Hanna Bräundl, Kathrin Ksienzyk, Bianka Batcha, Aarif M.N. Schaaf, Sebastian Schneider, Stephanie Bohlander, Stefan K. Görlich, Dennis Berdel, Wolfgang E. Wörmann, Bernhard J. Braess, Jan Krebs, Stefan Hiddemann, Wolfgang Mansmann, Ulrich Spiekermann, Karsten Greif, Philipp A. Oncotarget Research Paper In acute myeloid leukemia (AML), internal tandem duplications (ITDs) of FLT3 are frequent mutations associated with unfavorable prognosis. At diagnosis, the FLT3-ITD status is routinely assessed by fragment analysis, providing information about the length but not the position and sequence of the ITD. To overcome this limitation, we performed cDNA-based high-throughput amplicon sequencing (HTAS) in 250 FLT3-ITD positive AML patients, treated on German AML Cooperative Group (AMLCG) trials. FLT3-ITD status determined by routine diagnostics was confirmed by HTAS in 242 out of 250 patients (97%). The total number of ITDs detected by HTAS was higher than in routine diagnostics (n = 312 vs. n = 274). In particular, HTAS detected a higher number of ITDs per patient compared to fragment analysis, indicating higher sensitivity for subclonal ITDs. Patients with more than one ITD according to HTAS had a significantly shorter overall and relapse free survival. There was a close correlation between FLT3-ITD mRNA levels in fragment analysis and variant allele frequency in HTAS. However, the abundance of long ITDs (≥75nt) was underestimated by HTAS, as the size of the ITD affected the mappability of the corresponding sequence reads. In summary, this study demonstrates that HTAS is a feasible approach for FLT3-ITD detection in AML patients, delivering length, position, sequence and mutational burden of this alteration in a single assay with high sensitivity. Our findings provide insights into the clonal architecture of FLT3-ITD positive AML and have clinical implications. Impact Journals LLC 2018-07-10 /pmc/articles/PMC6059024/ /pubmed/30046393 http://dx.doi.org/10.18632/oncotarget.25729 Text en Copyright: © 2018 Schranz et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/) 3.0 (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Schranz, Katrin
Hubmann, Max
Harin, Egor
Vosberg, Sebastian
Herold, Tobias
Metzeler, Klaus H.
Rothenberg-Thurley, Maja
Janke, Hanna
Bräundl, Kathrin
Ksienzyk, Bianka
Batcha, Aarif M.N.
Schaaf, Sebastian
Schneider, Stephanie
Bohlander, Stefan K.
Görlich, Dennis
Berdel, Wolfgang E.
Wörmann, Bernhard J.
Braess, Jan
Krebs, Stefan
Hiddemann, Wolfgang
Mansmann, Ulrich
Spiekermann, Karsten
Greif, Philipp A.
Clonal heterogeneity of FLT3-ITD detected by high-throughput amplicon sequencing correlates with adverse prognosis in acute myeloid leukemia
title Clonal heterogeneity of FLT3-ITD detected by high-throughput amplicon sequencing correlates with adverse prognosis in acute myeloid leukemia
title_full Clonal heterogeneity of FLT3-ITD detected by high-throughput amplicon sequencing correlates with adverse prognosis in acute myeloid leukemia
title_fullStr Clonal heterogeneity of FLT3-ITD detected by high-throughput amplicon sequencing correlates with adverse prognosis in acute myeloid leukemia
title_full_unstemmed Clonal heterogeneity of FLT3-ITD detected by high-throughput amplicon sequencing correlates with adverse prognosis in acute myeloid leukemia
title_short Clonal heterogeneity of FLT3-ITD detected by high-throughput amplicon sequencing correlates with adverse prognosis in acute myeloid leukemia
title_sort clonal heterogeneity of flt3-itd detected by high-throughput amplicon sequencing correlates with adverse prognosis in acute myeloid leukemia
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6059024/
https://www.ncbi.nlm.nih.gov/pubmed/30046393
http://dx.doi.org/10.18632/oncotarget.25729
work_keys_str_mv AT schranzkatrin clonalheterogeneityofflt3itddetectedbyhighthroughputampliconsequencingcorrelateswithadverseprognosisinacutemyeloidleukemia
AT hubmannmax clonalheterogeneityofflt3itddetectedbyhighthroughputampliconsequencingcorrelateswithadverseprognosisinacutemyeloidleukemia
AT harinegor clonalheterogeneityofflt3itddetectedbyhighthroughputampliconsequencingcorrelateswithadverseprognosisinacutemyeloidleukemia
AT vosbergsebastian clonalheterogeneityofflt3itddetectedbyhighthroughputampliconsequencingcorrelateswithadverseprognosisinacutemyeloidleukemia
AT heroldtobias clonalheterogeneityofflt3itddetectedbyhighthroughputampliconsequencingcorrelateswithadverseprognosisinacutemyeloidleukemia
AT metzelerklaush clonalheterogeneityofflt3itddetectedbyhighthroughputampliconsequencingcorrelateswithadverseprognosisinacutemyeloidleukemia
AT rothenbergthurleymaja clonalheterogeneityofflt3itddetectedbyhighthroughputampliconsequencingcorrelateswithadverseprognosisinacutemyeloidleukemia
AT jankehanna clonalheterogeneityofflt3itddetectedbyhighthroughputampliconsequencingcorrelateswithadverseprognosisinacutemyeloidleukemia
AT braundlkathrin clonalheterogeneityofflt3itddetectedbyhighthroughputampliconsequencingcorrelateswithadverseprognosisinacutemyeloidleukemia
AT ksienzykbianka clonalheterogeneityofflt3itddetectedbyhighthroughputampliconsequencingcorrelateswithadverseprognosisinacutemyeloidleukemia
AT batchaaarifmn clonalheterogeneityofflt3itddetectedbyhighthroughputampliconsequencingcorrelateswithadverseprognosisinacutemyeloidleukemia
AT schaafsebastian clonalheterogeneityofflt3itddetectedbyhighthroughputampliconsequencingcorrelateswithadverseprognosisinacutemyeloidleukemia
AT schneiderstephanie clonalheterogeneityofflt3itddetectedbyhighthroughputampliconsequencingcorrelateswithadverseprognosisinacutemyeloidleukemia
AT bohlanderstefank clonalheterogeneityofflt3itddetectedbyhighthroughputampliconsequencingcorrelateswithadverseprognosisinacutemyeloidleukemia
AT gorlichdennis clonalheterogeneityofflt3itddetectedbyhighthroughputampliconsequencingcorrelateswithadverseprognosisinacutemyeloidleukemia
AT berdelwolfgange clonalheterogeneityofflt3itddetectedbyhighthroughputampliconsequencingcorrelateswithadverseprognosisinacutemyeloidleukemia
AT wormannbernhardj clonalheterogeneityofflt3itddetectedbyhighthroughputampliconsequencingcorrelateswithadverseprognosisinacutemyeloidleukemia
AT braessjan clonalheterogeneityofflt3itddetectedbyhighthroughputampliconsequencingcorrelateswithadverseprognosisinacutemyeloidleukemia
AT krebsstefan clonalheterogeneityofflt3itddetectedbyhighthroughputampliconsequencingcorrelateswithadverseprognosisinacutemyeloidleukemia
AT hiddemannwolfgang clonalheterogeneityofflt3itddetectedbyhighthroughputampliconsequencingcorrelateswithadverseprognosisinacutemyeloidleukemia
AT mansmannulrich clonalheterogeneityofflt3itddetectedbyhighthroughputampliconsequencingcorrelateswithadverseprognosisinacutemyeloidleukemia
AT spiekermannkarsten clonalheterogeneityofflt3itddetectedbyhighthroughputampliconsequencingcorrelateswithadverseprognosisinacutemyeloidleukemia
AT greifphilippa clonalheterogeneityofflt3itddetectedbyhighthroughputampliconsequencingcorrelateswithadverseprognosisinacutemyeloidleukemia