Cargando…

Optical Genome Mapping Identifies Novel Recurrent Structural Alterations in Childhood ETV6::RUNX1+ and High Hyperdiploid Acute Lymphoblastic Leukemia

The mutational landscape of B-cell precursor acute lymphoblastic leukemia (BCP-ALL), the most common pediatric cancer, is not fully described partially because commonly applied short-read next generation sequencing has a limited ability to identify structural variations. By combining comprehensive a...

Descripción completa

Detalles Bibliográficos
Autores principales: Brandes, Danielle, Yasin, Layal, Nebral, Karin, Ebler, Jana, Schinnerl, Dagmar, Picard, Daniel, Bergmann, Anke K., Alam, Jubayer, Köhrer, Stefan, Haas, Oskar A., Attarbaschi, Andishe, Marschall, Tobias, Stanulla, Martin, Borkhardt, Arndt, Brozou, Triantafyllia, Fischer, Ute, Wagener, Rabea
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Lippincott Williams & Wilkins 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10353714/
https://www.ncbi.nlm.nih.gov/pubmed/37469802
http://dx.doi.org/10.1097/HS9.0000000000000925
_version_ 1785074768795402240
author Brandes, Danielle
Yasin, Layal
Nebral, Karin
Ebler, Jana
Schinnerl, Dagmar
Picard, Daniel
Bergmann, Anke K.
Alam, Jubayer
Köhrer, Stefan
Haas, Oskar A.
Attarbaschi, Andishe
Marschall, Tobias
Stanulla, Martin
Borkhardt, Arndt
Brozou, Triantafyllia
Fischer, Ute
Wagener, Rabea
author_facet Brandes, Danielle
Yasin, Layal
Nebral, Karin
Ebler, Jana
Schinnerl, Dagmar
Picard, Daniel
Bergmann, Anke K.
Alam, Jubayer
Köhrer, Stefan
Haas, Oskar A.
Attarbaschi, Andishe
Marschall, Tobias
Stanulla, Martin
Borkhardt, Arndt
Brozou, Triantafyllia
Fischer, Ute
Wagener, Rabea
author_sort Brandes, Danielle
collection PubMed
description The mutational landscape of B-cell precursor acute lymphoblastic leukemia (BCP-ALL), the most common pediatric cancer, is not fully described partially because commonly applied short-read next generation sequencing has a limited ability to identify structural variations. By combining comprehensive analysis of structural variants (SVs), single-nucleotide variants (SNVs), and small insertions-deletions, new subtype-defining and therapeutic targets may be detected. We analyzed the landscape of somatic alterations in 60 pediatric patients diagnosed with the most common BCP-ALL subtypes, ETV6::RUNX1+ and classical hyperdiploid (HD), using conventional cytogenetics, single nucleotide polymorphism (SNP) array, whole exome sequencing (WES), and the novel optical genome mapping (OGM) technique. Ninety-five percent of SVs detected by cytogenetics and SNP-array were verified by OGM. OGM detected an additional 677 SVs not identified using the conventional methods, including (subclonal) IKZF1 deletions. Based on OGM, ETV6::RUNX1+ BCP-ALL harbored 2.7 times more SVs than HD BCP-ALL, mainly focal deletions. Besides SVs in known leukemia development genes (ETV6, PAX5, BTG1, CDKN2A), we identified 19 novel recurrently altered regions (in n ≥ 3) including 9p21.3 (FOCAD/HACD4), 8p11.21 (IKBKB), 1p34.3 (ZMYM1), 4q24 (MANBA), 8p23.1 (MSRA), and 10p14 (SFMBT2), as well as ETV6::RUNX1+ subtype-specific SVs (12p13.1 (GPRC5A), 12q24.21 (MED13L), 18q11.2 (MIB1), 20q11.22 (NCOA6)). We detected 3 novel fusion genes (SFMBT2::DGKD, PDS5B::STAG2, and TDRD5::LPCAT2), for which the sequence and expression were validated by long-read and whole transcriptome sequencing, respectively. OGM and WES identified double hits of SVs and SNVs (ETV6, BTG1, STAG2, MANBA, TBL1XR1, NSD2) in the same patient demonstrating the power of the combined approach to define the landscape of genomic alterations in BCP-ALL.
format Online
Article
Text
id pubmed-10353714
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Lippincott Williams & Wilkins
record_format MEDLINE/PubMed
spelling pubmed-103537142023-07-19 Optical Genome Mapping Identifies Novel Recurrent Structural Alterations in Childhood ETV6::RUNX1+ and High Hyperdiploid Acute Lymphoblastic Leukemia Brandes, Danielle Yasin, Layal Nebral, Karin Ebler, Jana Schinnerl, Dagmar Picard, Daniel Bergmann, Anke K. Alam, Jubayer Köhrer, Stefan Haas, Oskar A. Attarbaschi, Andishe Marschall, Tobias Stanulla, Martin Borkhardt, Arndt Brozou, Triantafyllia Fischer, Ute Wagener, Rabea Hemasphere Article The mutational landscape of B-cell precursor acute lymphoblastic leukemia (BCP-ALL), the most common pediatric cancer, is not fully described partially because commonly applied short-read next generation sequencing has a limited ability to identify structural variations. By combining comprehensive analysis of structural variants (SVs), single-nucleotide variants (SNVs), and small insertions-deletions, new subtype-defining and therapeutic targets may be detected. We analyzed the landscape of somatic alterations in 60 pediatric patients diagnosed with the most common BCP-ALL subtypes, ETV6::RUNX1+ and classical hyperdiploid (HD), using conventional cytogenetics, single nucleotide polymorphism (SNP) array, whole exome sequencing (WES), and the novel optical genome mapping (OGM) technique. Ninety-five percent of SVs detected by cytogenetics and SNP-array were verified by OGM. OGM detected an additional 677 SVs not identified using the conventional methods, including (subclonal) IKZF1 deletions. Based on OGM, ETV6::RUNX1+ BCP-ALL harbored 2.7 times more SVs than HD BCP-ALL, mainly focal deletions. Besides SVs in known leukemia development genes (ETV6, PAX5, BTG1, CDKN2A), we identified 19 novel recurrently altered regions (in n ≥ 3) including 9p21.3 (FOCAD/HACD4), 8p11.21 (IKBKB), 1p34.3 (ZMYM1), 4q24 (MANBA), 8p23.1 (MSRA), and 10p14 (SFMBT2), as well as ETV6::RUNX1+ subtype-specific SVs (12p13.1 (GPRC5A), 12q24.21 (MED13L), 18q11.2 (MIB1), 20q11.22 (NCOA6)). We detected 3 novel fusion genes (SFMBT2::DGKD, PDS5B::STAG2, and TDRD5::LPCAT2), for which the sequence and expression were validated by long-read and whole transcriptome sequencing, respectively. OGM and WES identified double hits of SVs and SNVs (ETV6, BTG1, STAG2, MANBA, TBL1XR1, NSD2) in the same patient demonstrating the power of the combined approach to define the landscape of genomic alterations in BCP-ALL. Lippincott Williams & Wilkins 2023-07-17 /pmc/articles/PMC10353714/ /pubmed/37469802 http://dx.doi.org/10.1097/HS9.0000000000000925 Text en Copyright © 2023 the Author(s). Published by Wolters Kluwer Health, Inc. on behalf of the European Hematology Association. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License 4.0 (CCBY) (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Article
Brandes, Danielle
Yasin, Layal
Nebral, Karin
Ebler, Jana
Schinnerl, Dagmar
Picard, Daniel
Bergmann, Anke K.
Alam, Jubayer
Köhrer, Stefan
Haas, Oskar A.
Attarbaschi, Andishe
Marschall, Tobias
Stanulla, Martin
Borkhardt, Arndt
Brozou, Triantafyllia
Fischer, Ute
Wagener, Rabea
Optical Genome Mapping Identifies Novel Recurrent Structural Alterations in Childhood ETV6::RUNX1+ and High Hyperdiploid Acute Lymphoblastic Leukemia
title Optical Genome Mapping Identifies Novel Recurrent Structural Alterations in Childhood ETV6::RUNX1+ and High Hyperdiploid Acute Lymphoblastic Leukemia
title_full Optical Genome Mapping Identifies Novel Recurrent Structural Alterations in Childhood ETV6::RUNX1+ and High Hyperdiploid Acute Lymphoblastic Leukemia
title_fullStr Optical Genome Mapping Identifies Novel Recurrent Structural Alterations in Childhood ETV6::RUNX1+ and High Hyperdiploid Acute Lymphoblastic Leukemia
title_full_unstemmed Optical Genome Mapping Identifies Novel Recurrent Structural Alterations in Childhood ETV6::RUNX1+ and High Hyperdiploid Acute Lymphoblastic Leukemia
title_short Optical Genome Mapping Identifies Novel Recurrent Structural Alterations in Childhood ETV6::RUNX1+ and High Hyperdiploid Acute Lymphoblastic Leukemia
title_sort optical genome mapping identifies novel recurrent structural alterations in childhood etv6::runx1+ and high hyperdiploid acute lymphoblastic leukemia
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10353714/
https://www.ncbi.nlm.nih.gov/pubmed/37469802
http://dx.doi.org/10.1097/HS9.0000000000000925
work_keys_str_mv AT brandesdanielle opticalgenomemappingidentifiesnovelrecurrentstructuralalterationsinchildhoodetv6runx1andhighhyperdiploidacutelymphoblasticleukemia
AT yasinlayal opticalgenomemappingidentifiesnovelrecurrentstructuralalterationsinchildhoodetv6runx1andhighhyperdiploidacutelymphoblasticleukemia
AT nebralkarin opticalgenomemappingidentifiesnovelrecurrentstructuralalterationsinchildhoodetv6runx1andhighhyperdiploidacutelymphoblasticleukemia
AT eblerjana opticalgenomemappingidentifiesnovelrecurrentstructuralalterationsinchildhoodetv6runx1andhighhyperdiploidacutelymphoblasticleukemia
AT schinnerldagmar opticalgenomemappingidentifiesnovelrecurrentstructuralalterationsinchildhoodetv6runx1andhighhyperdiploidacutelymphoblasticleukemia
AT picarddaniel opticalgenomemappingidentifiesnovelrecurrentstructuralalterationsinchildhoodetv6runx1andhighhyperdiploidacutelymphoblasticleukemia
AT bergmannankek opticalgenomemappingidentifiesnovelrecurrentstructuralalterationsinchildhoodetv6runx1andhighhyperdiploidacutelymphoblasticleukemia
AT alamjubayer opticalgenomemappingidentifiesnovelrecurrentstructuralalterationsinchildhoodetv6runx1andhighhyperdiploidacutelymphoblasticleukemia
AT kohrerstefan opticalgenomemappingidentifiesnovelrecurrentstructuralalterationsinchildhoodetv6runx1andhighhyperdiploidacutelymphoblasticleukemia
AT haasoskara opticalgenomemappingidentifiesnovelrecurrentstructuralalterationsinchildhoodetv6runx1andhighhyperdiploidacutelymphoblasticleukemia
AT attarbaschiandishe opticalgenomemappingidentifiesnovelrecurrentstructuralalterationsinchildhoodetv6runx1andhighhyperdiploidacutelymphoblasticleukemia
AT marschalltobias opticalgenomemappingidentifiesnovelrecurrentstructuralalterationsinchildhoodetv6runx1andhighhyperdiploidacutelymphoblasticleukemia
AT stanullamartin opticalgenomemappingidentifiesnovelrecurrentstructuralalterationsinchildhoodetv6runx1andhighhyperdiploidacutelymphoblasticleukemia
AT borkhardtarndt opticalgenomemappingidentifiesnovelrecurrentstructuralalterationsinchildhoodetv6runx1andhighhyperdiploidacutelymphoblasticleukemia
AT brozoutriantafyllia opticalgenomemappingidentifiesnovelrecurrentstructuralalterationsinchildhoodetv6runx1andhighhyperdiploidacutelymphoblasticleukemia
AT fischerute opticalgenomemappingidentifiesnovelrecurrentstructuralalterationsinchildhoodetv6runx1andhighhyperdiploidacutelymphoblasticleukemia
AT wagenerrabea opticalgenomemappingidentifiesnovelrecurrentstructuralalterationsinchildhoodetv6runx1andhighhyperdiploidacutelymphoblasticleukemia