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TMOD-06. LOSS OF DICER COOPERATES WITH TUMOR SUPPRESSORS TO INITIATE METASTATIC MEDULLOBLASTOMA

To determine the role of microRNA regulation in brain tumor development, we incorporated a conditional allele of the microRNA processing enzyme Dicer to a previously characterized glioma mouse model based on inactivation of the tumor suppressors Nf1, Trp53, and Pten using the Nestin-creER(T2) transg...

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Autores principales: Alcantara Llaguno, Sheila, Nazarenko, Inga, Chen, Yuntao, Sun, Daochun, Rocca, Gaspare La, Pedraza, Alicia, Gudenas, Brian, Saulnier, Olivier, Burns, Dennis, Bale, Tejus, Northcott, Paul, Taylor, Michael, Ventura, Andrea, Parada, Luis
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8168245/
http://dx.doi.org/10.1093/neuonc/noab090.147
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author Alcantara Llaguno, Sheila
Nazarenko, Inga
Chen, Yuntao
Sun, Daochun
Rocca, Gaspare La
Pedraza, Alicia
Gudenas, Brian
Saulnier, Olivier
Burns, Dennis
Bale, Tejus
Northcott, Paul
Taylor, Michael
Ventura, Andrea
Parada, Luis
author_facet Alcantara Llaguno, Sheila
Nazarenko, Inga
Chen, Yuntao
Sun, Daochun
Rocca, Gaspare La
Pedraza, Alicia
Gudenas, Brian
Saulnier, Olivier
Burns, Dennis
Bale, Tejus
Northcott, Paul
Taylor, Michael
Ventura, Andrea
Parada, Luis
author_sort Alcantara Llaguno, Sheila
collection PubMed
description To determine the role of microRNA regulation in brain tumor development, we incorporated a conditional allele of the microRNA processing enzyme Dicer to a previously characterized glioma mouse model based on inactivation of the tumor suppressors Nf1, Trp53, and Pten using the Nestin-creER(T2) transgene. Loss of Dicer and tumor suppressors at adult ages led to glioma development; however, mutant mice tamoxifen induced at early postnatal ages developed medulloblastoma instead of glioma. The switch in tumor spectrum occurred with 100% penetrance and tumors were histologically indistinguishable from human medulloblastoma (MB). The minimum genetic mutations required for MB formation were Dicer and Trp53. Nf1 was dispensable, while additional loss of Pten produced more invasive tumors and leptomeningeal metastases. The time window for initiation of tumorigenesis was until the 2(nd) postnatal week, coinciding with the disappearance of the external granule layer (EGL), where cerebellar granule neuron precursors (CGNPs) undergo proliferation. Analysis of pre-symptomatic mutant mice showed proliferative defects and retained cells in the EGL, suggesting that the tumors may arise from CGNPs. However, targeting a subset of CGNPs using Math1-creER(T2) did not lead to MB development, suggesting that an earlier EGL precursor may be required for tumorigenesis. Analysis of tumor transcriptome and MB subtype-specific genes and markers show that Dicer tumors most resemble extremely high risk p53-mutated SHH MB. Small RNA and mRNA sequencing analyses showed downregulation of microRNAs and dysregulation of its targets such as N-Myc. These studies demonstrate a role for microRNAs in MB development and show a fully penetrant genetic mouse model of highly metastatic MB.
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spelling pubmed-81682452021-06-02 TMOD-06. LOSS OF DICER COOPERATES WITH TUMOR SUPPRESSORS TO INITIATE METASTATIC MEDULLOBLASTOMA Alcantara Llaguno, Sheila Nazarenko, Inga Chen, Yuntao Sun, Daochun Rocca, Gaspare La Pedraza, Alicia Gudenas, Brian Saulnier, Olivier Burns, Dennis Bale, Tejus Northcott, Paul Taylor, Michael Ventura, Andrea Parada, Luis Neuro Oncol Models To determine the role of microRNA regulation in brain tumor development, we incorporated a conditional allele of the microRNA processing enzyme Dicer to a previously characterized glioma mouse model based on inactivation of the tumor suppressors Nf1, Trp53, and Pten using the Nestin-creER(T2) transgene. Loss of Dicer and tumor suppressors at adult ages led to glioma development; however, mutant mice tamoxifen induced at early postnatal ages developed medulloblastoma instead of glioma. The switch in tumor spectrum occurred with 100% penetrance and tumors were histologically indistinguishable from human medulloblastoma (MB). The minimum genetic mutations required for MB formation were Dicer and Trp53. Nf1 was dispensable, while additional loss of Pten produced more invasive tumors and leptomeningeal metastases. The time window for initiation of tumorigenesis was until the 2(nd) postnatal week, coinciding with the disappearance of the external granule layer (EGL), where cerebellar granule neuron precursors (CGNPs) undergo proliferation. Analysis of pre-symptomatic mutant mice showed proliferative defects and retained cells in the EGL, suggesting that the tumors may arise from CGNPs. However, targeting a subset of CGNPs using Math1-creER(T2) did not lead to MB development, suggesting that an earlier EGL precursor may be required for tumorigenesis. Analysis of tumor transcriptome and MB subtype-specific genes and markers show that Dicer tumors most resemble extremely high risk p53-mutated SHH MB. Small RNA and mRNA sequencing analyses showed downregulation of microRNAs and dysregulation of its targets such as N-Myc. These studies demonstrate a role for microRNAs in MB development and show a fully penetrant genetic mouse model of highly metastatic MB. Oxford University Press 2021-06-01 /pmc/articles/PMC8168245/ http://dx.doi.org/10.1093/neuonc/noab090.147 Text en © The Author(s) 2021. Published by Oxford University Press on behalf of the Society for Neuro-Oncology. All rights reserved. For permissions, please e-mail: journals.permissions@oup.com. https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/ (https://creativecommons.org/licenses/by-nc/4.0/) ), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Models
Alcantara Llaguno, Sheila
Nazarenko, Inga
Chen, Yuntao
Sun, Daochun
Rocca, Gaspare La
Pedraza, Alicia
Gudenas, Brian
Saulnier, Olivier
Burns, Dennis
Bale, Tejus
Northcott, Paul
Taylor, Michael
Ventura, Andrea
Parada, Luis
TMOD-06. LOSS OF DICER COOPERATES WITH TUMOR SUPPRESSORS TO INITIATE METASTATIC MEDULLOBLASTOMA
title TMOD-06. LOSS OF DICER COOPERATES WITH TUMOR SUPPRESSORS TO INITIATE METASTATIC MEDULLOBLASTOMA
title_full TMOD-06. LOSS OF DICER COOPERATES WITH TUMOR SUPPRESSORS TO INITIATE METASTATIC MEDULLOBLASTOMA
title_fullStr TMOD-06. LOSS OF DICER COOPERATES WITH TUMOR SUPPRESSORS TO INITIATE METASTATIC MEDULLOBLASTOMA
title_full_unstemmed TMOD-06. LOSS OF DICER COOPERATES WITH TUMOR SUPPRESSORS TO INITIATE METASTATIC MEDULLOBLASTOMA
title_short TMOD-06. LOSS OF DICER COOPERATES WITH TUMOR SUPPRESSORS TO INITIATE METASTATIC MEDULLOBLASTOMA
title_sort tmod-06. loss of dicer cooperates with tumor suppressors to initiate metastatic medulloblastoma
topic Models
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8168245/
http://dx.doi.org/10.1093/neuonc/noab090.147
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