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Deep sequencing of a recurrent oligodendroglioma and the derived xenografts reveals new insights into the evolution of human oligodendroglioma and candidate driver genes

We previously reported the establishment of a rare xenograft derived from a recurrent oligodendroglioma with 1p/19q codeletion. Here, we analyzed in detail the exome sequencing datasets from the recurrent oligodendroglioma (WHO grade III, recurrent O(2010)) and the first-generation xenograft (xenogr...

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Autores principales: Exner, Nadin D., Valenzuela, Jaime Alberto Campos, Abou-El-Ardat, Khalil, Miletic, Hrvoje, Huszthy, Peter C., Radehaus, Petra M., Schröck, Evelin, Bjerkvig, Rolf, Kaderali, Lars, Klink, Barbara, Nigro, Janice M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6557204/
https://www.ncbi.nlm.nih.gov/pubmed/31217899
http://dx.doi.org/10.18632/oncotarget.26950
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author Exner, Nadin D.
Valenzuela, Jaime Alberto Campos
Abou-El-Ardat, Khalil
Miletic, Hrvoje
Huszthy, Peter C.
Radehaus, Petra M.
Schröck, Evelin
Bjerkvig, Rolf
Kaderali, Lars
Klink, Barbara
Nigro, Janice M.
author_facet Exner, Nadin D.
Valenzuela, Jaime Alberto Campos
Abou-El-Ardat, Khalil
Miletic, Hrvoje
Huszthy, Peter C.
Radehaus, Petra M.
Schröck, Evelin
Bjerkvig, Rolf
Kaderali, Lars
Klink, Barbara
Nigro, Janice M.
author_sort Exner, Nadin D.
collection PubMed
description We previously reported the establishment of a rare xenograft derived from a recurrent oligodendroglioma with 1p/19q codeletion. Here, we analyzed in detail the exome sequencing datasets from the recurrent oligodendroglioma (WHO grade III, recurrent O(2010)) and the first-generation xenograft (xenograft(1)). Somatic SNVs and small InDels (n = 80) with potential effects at the protein level in recurrent O(2010) included variants in IDH1 (NM_005896:c.395G>A; p. Arg132His), FUBP1 (NM_003902:c.1307_1310delTAGA; p.Ile436fs), and CIC (NM_015125:c.4421T>G; p.Val1474Gly). All but 2 of these 80 variants were also present in xenograft(1), along with 7 new variants. Deep sequencing of the 87 SNVs and InDels in the original tumor (WHO grade III, primary O(2005)) and in a second-generation xenograft (xenograft(2)) revealed that only 11 variants, including IDH1 (NM_005896:c.395G>A; p. Arg132His), PSKH1 (NM_006742.2:c.650G>A; p.Arg217Gln), and SNX12 (NM_001256188:c.470G>A; p.Arg157His), along with a variant in the TERT promoter (C250T, NM_198253.2: c.-146G>A), were already present in primary O(2005). Allele frequencies of the 11 variants were calculated to assess their potential as putative driver genes. A missense change in NDST4 (NM_022569:c.2392C>G; p.Leu798Val) on 4q exhibited an increasing allele frequency (~ 20%, primary O(2005), 80%, recurrent O(2010) and 100%, xenograft(1)), consistent with a selection event. Sequencing of NDST4 in a cohort of 15 oligodendrogliomas, however, revealed no additional cases with potential protein disrupting variants. Our analysis illuminated a tumor evolutionary series of events, which included 1p/19q codeletion, IDH1 R132H, and TERT C250T as early events, followed by loss of function of NDST4 and mutations in FUBP1 and CIC as late events.
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spelling pubmed-65572042019-06-19 Deep sequencing of a recurrent oligodendroglioma and the derived xenografts reveals new insights into the evolution of human oligodendroglioma and candidate driver genes Exner, Nadin D. Valenzuela, Jaime Alberto Campos Abou-El-Ardat, Khalil Miletic, Hrvoje Huszthy, Peter C. Radehaus, Petra M. Schröck, Evelin Bjerkvig, Rolf Kaderali, Lars Klink, Barbara Nigro, Janice M. Oncotarget Research Paper We previously reported the establishment of a rare xenograft derived from a recurrent oligodendroglioma with 1p/19q codeletion. Here, we analyzed in detail the exome sequencing datasets from the recurrent oligodendroglioma (WHO grade III, recurrent O(2010)) and the first-generation xenograft (xenograft(1)). Somatic SNVs and small InDels (n = 80) with potential effects at the protein level in recurrent O(2010) included variants in IDH1 (NM_005896:c.395G>A; p. Arg132His), FUBP1 (NM_003902:c.1307_1310delTAGA; p.Ile436fs), and CIC (NM_015125:c.4421T>G; p.Val1474Gly). All but 2 of these 80 variants were also present in xenograft(1), along with 7 new variants. Deep sequencing of the 87 SNVs and InDels in the original tumor (WHO grade III, primary O(2005)) and in a second-generation xenograft (xenograft(2)) revealed that only 11 variants, including IDH1 (NM_005896:c.395G>A; p. Arg132His), PSKH1 (NM_006742.2:c.650G>A; p.Arg217Gln), and SNX12 (NM_001256188:c.470G>A; p.Arg157His), along with a variant in the TERT promoter (C250T, NM_198253.2: c.-146G>A), were already present in primary O(2005). Allele frequencies of the 11 variants were calculated to assess their potential as putative driver genes. A missense change in NDST4 (NM_022569:c.2392C>G; p.Leu798Val) on 4q exhibited an increasing allele frequency (~ 20%, primary O(2005), 80%, recurrent O(2010) and 100%, xenograft(1)), consistent with a selection event. Sequencing of NDST4 in a cohort of 15 oligodendrogliomas, however, revealed no additional cases with potential protein disrupting variants. Our analysis illuminated a tumor evolutionary series of events, which included 1p/19q codeletion, IDH1 R132H, and TERT C250T as early events, followed by loss of function of NDST4 and mutations in FUBP1 and CIC as late events. Impact Journals LLC 2019-06-04 /pmc/articles/PMC6557204/ /pubmed/31217899 http://dx.doi.org/10.18632/oncotarget.26950 Text en http://creativecommons.org/licenses/by/3.0/ Copyright: Exner et al. This is an open-access article distributed under the terms of the Creative Commons Attribution License 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
Exner, Nadin D.
Valenzuela, Jaime Alberto Campos
Abou-El-Ardat, Khalil
Miletic, Hrvoje
Huszthy, Peter C.
Radehaus, Petra M.
Schröck, Evelin
Bjerkvig, Rolf
Kaderali, Lars
Klink, Barbara
Nigro, Janice M.
Deep sequencing of a recurrent oligodendroglioma and the derived xenografts reveals new insights into the evolution of human oligodendroglioma and candidate driver genes
title Deep sequencing of a recurrent oligodendroglioma and the derived xenografts reveals new insights into the evolution of human oligodendroglioma and candidate driver genes
title_full Deep sequencing of a recurrent oligodendroglioma and the derived xenografts reveals new insights into the evolution of human oligodendroglioma and candidate driver genes
title_fullStr Deep sequencing of a recurrent oligodendroglioma and the derived xenografts reveals new insights into the evolution of human oligodendroglioma and candidate driver genes
title_full_unstemmed Deep sequencing of a recurrent oligodendroglioma and the derived xenografts reveals new insights into the evolution of human oligodendroglioma and candidate driver genes
title_short Deep sequencing of a recurrent oligodendroglioma and the derived xenografts reveals new insights into the evolution of human oligodendroglioma and candidate driver genes
title_sort deep sequencing of a recurrent oligodendroglioma and the derived xenografts reveals new insights into the evolution of human oligodendroglioma and candidate driver genes
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6557204/
https://www.ncbi.nlm.nih.gov/pubmed/31217899
http://dx.doi.org/10.18632/oncotarget.26950
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