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Ex vivo miRNome analysis in Ptch1(+/−) cerebellum granule cells reveals a subset of miRNAs involved in radiation-induced medulloblastoma

It has historically been accepted that incorrectly repaired DNA double strand breaks (DSBs) are the principal lesions of importance regarding mutagenesis, and long-term biological effects associated with ionizing radiation. However, radiation may also cause dysregulation of epigenetic processes that...

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Autores principales: Tanno, Barbara, Babini, Gabriele, Leonardi, Simona, Giardullo, Paola, Stefano, Ilaria De, Pasquali, Emanuela, Ottolenghi, Andrea, Atkinson, Michael J., Saran, Anna, Mancuso, Mariateresa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5356552/
https://www.ncbi.nlm.nih.gov/pubmed/27626168
http://dx.doi.org/10.18632/oncotarget.11938
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author Tanno, Barbara
Babini, Gabriele
Leonardi, Simona
Giardullo, Paola
Stefano, Ilaria De
Pasquali, Emanuela
Ottolenghi, Andrea
Atkinson, Michael J.
Saran, Anna
Mancuso, Mariateresa
author_facet Tanno, Barbara
Babini, Gabriele
Leonardi, Simona
Giardullo, Paola
Stefano, Ilaria De
Pasquali, Emanuela
Ottolenghi, Andrea
Atkinson, Michael J.
Saran, Anna
Mancuso, Mariateresa
author_sort Tanno, Barbara
collection PubMed
description It has historically been accepted that incorrectly repaired DNA double strand breaks (DSBs) are the principal lesions of importance regarding mutagenesis, and long-term biological effects associated with ionizing radiation. However, radiation may also cause dysregulation of epigenetic processes that can lead to altered gene function and malignant transformation, and epigenetic alterations are important causes of miRNAs dysregulation in cancer. Patched1 heterozygous (Ptch1(+/−)) mice, characterized by aberrant activation of the Sonic hedgehog (Shh) signaling pathway, are a well-known murine model of spontaneous and radiation-induced medulloblastoma (MB), a common pediatric brain tumor originating from neural granule cell progenitors (GCPs). The high sensitivity of neonatal Ptch1(+/−) mice to radiogenic MB is dependent on deregulation of the Ptch1 gene function. Ptch1 activates a growth and differentiation programme that is a strong candidate for regulation through the non-coding genome. Therefore we carried out miRNA next generation sequencing in ex vivo irradiated and control GCPs, isolated and purified from cerebella of neonatal WT and Ptch1(+/−) mice. We identified a subset of miRNAs, namely let-7 family and miR-17∼92 cluster members, whose expression is altered in GCPs by radiation alone, or by synergistic interaction of radiation with Shh-deregulation. The same miRNAs were further validated in spontaneous and radiation-induced MBs from Ptch1(+/−) mice, confirming persistent deregulation of these miRNAs in the pathogenesis of MB. Our results support the hypothesis that miRNAs dysregulation is associated with radiosensitivity of GCPs and their neoplastic transformation in vivo.
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spelling pubmed-53565522017-03-24 Ex vivo miRNome analysis in Ptch1(+/−) cerebellum granule cells reveals a subset of miRNAs involved in radiation-induced medulloblastoma Tanno, Barbara Babini, Gabriele Leonardi, Simona Giardullo, Paola Stefano, Ilaria De Pasquali, Emanuela Ottolenghi, Andrea Atkinson, Michael J. Saran, Anna Mancuso, Mariateresa Oncotarget Research Paper It has historically been accepted that incorrectly repaired DNA double strand breaks (DSBs) are the principal lesions of importance regarding mutagenesis, and long-term biological effects associated with ionizing radiation. However, radiation may also cause dysregulation of epigenetic processes that can lead to altered gene function and malignant transformation, and epigenetic alterations are important causes of miRNAs dysregulation in cancer. Patched1 heterozygous (Ptch1(+/−)) mice, characterized by aberrant activation of the Sonic hedgehog (Shh) signaling pathway, are a well-known murine model of spontaneous and radiation-induced medulloblastoma (MB), a common pediatric brain tumor originating from neural granule cell progenitors (GCPs). The high sensitivity of neonatal Ptch1(+/−) mice to radiogenic MB is dependent on deregulation of the Ptch1 gene function. Ptch1 activates a growth and differentiation programme that is a strong candidate for regulation through the non-coding genome. Therefore we carried out miRNA next generation sequencing in ex vivo irradiated and control GCPs, isolated and purified from cerebella of neonatal WT and Ptch1(+/−) mice. We identified a subset of miRNAs, namely let-7 family and miR-17∼92 cluster members, whose expression is altered in GCPs by radiation alone, or by synergistic interaction of radiation with Shh-deregulation. The same miRNAs were further validated in spontaneous and radiation-induced MBs from Ptch1(+/−) mice, confirming persistent deregulation of these miRNAs in the pathogenesis of MB. Our results support the hypothesis that miRNAs dysregulation is associated with radiosensitivity of GCPs and their neoplastic transformation in vivo. Impact Journals LLC 2016-09-10 /pmc/articles/PMC5356552/ /pubmed/27626168 http://dx.doi.org/10.18632/oncotarget.11938 Text en Copyright: © 2016 Tanno 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Tanno, Barbara
Babini, Gabriele
Leonardi, Simona
Giardullo, Paola
Stefano, Ilaria De
Pasquali, Emanuela
Ottolenghi, Andrea
Atkinson, Michael J.
Saran, Anna
Mancuso, Mariateresa
Ex vivo miRNome analysis in Ptch1(+/−) cerebellum granule cells reveals a subset of miRNAs involved in radiation-induced medulloblastoma
title Ex vivo miRNome analysis in Ptch1(+/−) cerebellum granule cells reveals a subset of miRNAs involved in radiation-induced medulloblastoma
title_full Ex vivo miRNome analysis in Ptch1(+/−) cerebellum granule cells reveals a subset of miRNAs involved in radiation-induced medulloblastoma
title_fullStr Ex vivo miRNome analysis in Ptch1(+/−) cerebellum granule cells reveals a subset of miRNAs involved in radiation-induced medulloblastoma
title_full_unstemmed Ex vivo miRNome analysis in Ptch1(+/−) cerebellum granule cells reveals a subset of miRNAs involved in radiation-induced medulloblastoma
title_short Ex vivo miRNome analysis in Ptch1(+/−) cerebellum granule cells reveals a subset of miRNAs involved in radiation-induced medulloblastoma
title_sort ex vivo mirnome analysis in ptch1(+/−) cerebellum granule cells reveals a subset of mirnas involved in radiation-induced medulloblastoma
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5356552/
https://www.ncbi.nlm.nih.gov/pubmed/27626168
http://dx.doi.org/10.18632/oncotarget.11938
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