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The mutational landscape of MYCN, Lin28b and ALK(F1174L) driven murine neuroblastoma mimics human disease

Genetically engineered mouse models have proven to be essential tools for unraveling fundamental aspects of cancer biology and for testing novel therapeutic strategies. To optimally serve these goals, it is essential that the mouse model faithfully recapitulates the human disease. Recently, novel mo...

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Autores principales: De Wilde, Bram, Beckers, Anneleen, Lindner, Sven, Kristina, Althoff, De Preter, Katleen, Depuydt, Pauline, Mestdagh, Pieter, Sante, Tom, Lefever, Steve, Hertwig, Falk, Peng, Zhiyu, Shi, Le-Ming, Lee, Sangkyun, Vandermarliere, Elien, Martens, Lennart, Menten, Björn, Schramm, Alexander, Fischer, Matthias, Schulte, Johannes, Vandesompele, Jo, Speleman, Frank
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5823580/
https://www.ncbi.nlm.nih.gov/pubmed/29492199
http://dx.doi.org/10.18632/oncotarget.23614
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author De Wilde, Bram
Beckers, Anneleen
Lindner, Sven
Kristina, Althoff
De Preter, Katleen
Depuydt, Pauline
Mestdagh, Pieter
Sante, Tom
Lefever, Steve
Hertwig, Falk
Peng, Zhiyu
Shi, Le-Ming
Lee, Sangkyun
Vandermarliere, Elien
Martens, Lennart
Menten, Björn
Schramm, Alexander
Fischer, Matthias
Schulte, Johannes
Vandesompele, Jo
Speleman, Frank
author_facet De Wilde, Bram
Beckers, Anneleen
Lindner, Sven
Kristina, Althoff
De Preter, Katleen
Depuydt, Pauline
Mestdagh, Pieter
Sante, Tom
Lefever, Steve
Hertwig, Falk
Peng, Zhiyu
Shi, Le-Ming
Lee, Sangkyun
Vandermarliere, Elien
Martens, Lennart
Menten, Björn
Schramm, Alexander
Fischer, Matthias
Schulte, Johannes
Vandesompele, Jo
Speleman, Frank
author_sort De Wilde, Bram
collection PubMed
description Genetically engineered mouse models have proven to be essential tools for unraveling fundamental aspects of cancer biology and for testing novel therapeutic strategies. To optimally serve these goals, it is essential that the mouse model faithfully recapitulates the human disease. Recently, novel mouse models for neuroblastoma have been developed. Here, we report on the further genomic characterization through exome sequencing and DNA copy number analysis of four of the currently available murine neuroblastoma model systems (ALK, Th-MYCN, Dbh-MYCN and Lin28b). The murine tumors revealed a low number of genomic alterations – in keeping with human neuroblastoma - and a positive correlation of the number of genetic lesions with the time to onset of tumor formation was observed. Gene copy number alterations are the hallmark of both murine and human disease and frequently affect syntenic genomic regions. Despite low mutational load, the genes mutated in murine disease were found to be enriched for genes mutated in human disease. Taken together, our study further supports the validity of the tested mouse models for mechanistic and preclinical studies of human neuroblastoma.
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spelling pubmed-58235802018-02-28 The mutational landscape of MYCN, Lin28b and ALK(F1174L) driven murine neuroblastoma mimics human disease De Wilde, Bram Beckers, Anneleen Lindner, Sven Kristina, Althoff De Preter, Katleen Depuydt, Pauline Mestdagh, Pieter Sante, Tom Lefever, Steve Hertwig, Falk Peng, Zhiyu Shi, Le-Ming Lee, Sangkyun Vandermarliere, Elien Martens, Lennart Menten, Björn Schramm, Alexander Fischer, Matthias Schulte, Johannes Vandesompele, Jo Speleman, Frank Oncotarget Research Paper Genetically engineered mouse models have proven to be essential tools for unraveling fundamental aspects of cancer biology and for testing novel therapeutic strategies. To optimally serve these goals, it is essential that the mouse model faithfully recapitulates the human disease. Recently, novel mouse models for neuroblastoma have been developed. Here, we report on the further genomic characterization through exome sequencing and DNA copy number analysis of four of the currently available murine neuroblastoma model systems (ALK, Th-MYCN, Dbh-MYCN and Lin28b). The murine tumors revealed a low number of genomic alterations – in keeping with human neuroblastoma - and a positive correlation of the number of genetic lesions with the time to onset of tumor formation was observed. Gene copy number alterations are the hallmark of both murine and human disease and frequently affect syntenic genomic regions. Despite low mutational load, the genes mutated in murine disease were found to be enriched for genes mutated in human disease. Taken together, our study further supports the validity of the tested mouse models for mechanistic and preclinical studies of human neuroblastoma. Impact Journals LLC 2017-12-22 /pmc/articles/PMC5823580/ /pubmed/29492199 http://dx.doi.org/10.18632/oncotarget.23614 Text en Copyright: © 2018 De Wilde 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
De Wilde, Bram
Beckers, Anneleen
Lindner, Sven
Kristina, Althoff
De Preter, Katleen
Depuydt, Pauline
Mestdagh, Pieter
Sante, Tom
Lefever, Steve
Hertwig, Falk
Peng, Zhiyu
Shi, Le-Ming
Lee, Sangkyun
Vandermarliere, Elien
Martens, Lennart
Menten, Björn
Schramm, Alexander
Fischer, Matthias
Schulte, Johannes
Vandesompele, Jo
Speleman, Frank
The mutational landscape of MYCN, Lin28b and ALK(F1174L) driven murine neuroblastoma mimics human disease
title The mutational landscape of MYCN, Lin28b and ALK(F1174L) driven murine neuroblastoma mimics human disease
title_full The mutational landscape of MYCN, Lin28b and ALK(F1174L) driven murine neuroblastoma mimics human disease
title_fullStr The mutational landscape of MYCN, Lin28b and ALK(F1174L) driven murine neuroblastoma mimics human disease
title_full_unstemmed The mutational landscape of MYCN, Lin28b and ALK(F1174L) driven murine neuroblastoma mimics human disease
title_short The mutational landscape of MYCN, Lin28b and ALK(F1174L) driven murine neuroblastoma mimics human disease
title_sort mutational landscape of mycn, lin28b and alk(f1174l) driven murine neuroblastoma mimics human disease
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5823580/
https://www.ncbi.nlm.nih.gov/pubmed/29492199
http://dx.doi.org/10.18632/oncotarget.23614
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