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Lung neuroendocrine tumours: deep sequencing of the four World Health Organization histotypes reveals chromatin‐remodelling genes as major players and a prognostic role for TERT, RB1, MEN1 and KMT2D

Next‐generation sequencing (NGS) was applied to 148 lung neuroendocrine tumours (LNETs) comprising the four World Health Organization classification categories: 53 typical carcinoid (TCs), 35 atypical carcinoid (ACs), 27 large‐cell neuroendocrine carcinomas, and 33 small‐cell lung carcinomas. A disc...

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Autores principales: Simbolo, Michele, Mafficini, Andrea, Sikora, Katarzyna O, Fassan, Matteo, Barbi, Stefano, Corbo, Vincenzo, Mastracci, Luca, Rusev, Borislav, Grillo, Federica, Vicentini, Caterina, Ferrara, Roberto, Pilotto, Sara, Davini, Federico, Pelosi, Giuseppe, Lawlor, Rita T, Chilosi, Marco, Tortora, Giampaolo, Bria, Emilio, Fontanini, Gabriella, Volante, Marco, Scarpa, Aldo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Ltd 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5324596/
https://www.ncbi.nlm.nih.gov/pubmed/27873319
http://dx.doi.org/10.1002/path.4853
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author Simbolo, Michele
Mafficini, Andrea
Sikora, Katarzyna O
Fassan, Matteo
Barbi, Stefano
Corbo, Vincenzo
Mastracci, Luca
Rusev, Borislav
Grillo, Federica
Vicentini, Caterina
Ferrara, Roberto
Pilotto, Sara
Davini, Federico
Pelosi, Giuseppe
Lawlor, Rita T
Chilosi, Marco
Tortora, Giampaolo
Bria, Emilio
Fontanini, Gabriella
Volante, Marco
Scarpa, Aldo
author_facet Simbolo, Michele
Mafficini, Andrea
Sikora, Katarzyna O
Fassan, Matteo
Barbi, Stefano
Corbo, Vincenzo
Mastracci, Luca
Rusev, Borislav
Grillo, Federica
Vicentini, Caterina
Ferrara, Roberto
Pilotto, Sara
Davini, Federico
Pelosi, Giuseppe
Lawlor, Rita T
Chilosi, Marco
Tortora, Giampaolo
Bria, Emilio
Fontanini, Gabriella
Volante, Marco
Scarpa, Aldo
author_sort Simbolo, Michele
collection PubMed
description Next‐generation sequencing (NGS) was applied to 148 lung neuroendocrine tumours (LNETs) comprising the four World Health Organization classification categories: 53 typical carcinoid (TCs), 35 atypical carcinoid (ACs), 27 large‐cell neuroendocrine carcinomas, and 33 small‐cell lung carcinomas. A discovery screen was conducted on 46 samples by the use of whole‐exome sequencing and high‐coverage targeted sequencing of 418 genes. Eighty‐eight recurrently mutated genes from both the discovery screen and current literature were verified in the 46 cases of the discovery screen, and validated on additional 102 LNETs by targeted NGS; their prevalence was then evaluated on the whole series. Thirteen of these 88 genes were also evaluated for copy number alterations (CNAs). Carcinoids and carcinomas shared most of the altered genes but with different prevalence rates. When mutations and copy number changes were combined, MEN1 alterations were almost exclusive to carcinoids, whereas alterations of TP53 and RB1 cell cycle regulation genes and PI3K/AKT/mTOR pathway genes were significantly enriched in carcinomas. Conversely, mutations in chromatin‐remodelling genes, including those encoding histone modifiers and members of SWI–SNF complexes, were found at similar rates in carcinoids (45.5%) and carcinomas (55.0%), suggesting a major role in LNET pathogenesis. One AC and one TC showed a hypermutated profile associated with a POLQ damaging mutation. There were fewer CNAs in carcinoids than in carcinomas; however ACs showed a hybrid pattern, whereby gains of TERT, SDHA, RICTOR, PIK3CA, MYCL and SRC were found at rates similar to those in carcinomas, whereas the MEN1 loss rate mirrored that of TCs. Multivariate survival analysis revealed RB1 mutation (p = 0.0005) and TERT copy gain (p = 0.016) as independent predictors of poorer prognosis. MEN1 mutation was associated with poor prognosis in AC (p = 0.0045), whereas KMT2D mutation correlated with longer survival in SCLC (p = 0.0022). In conclusion, molecular profiling may complement histology for better diagnostic definition and prognostic stratification of LNETs. © 2016 The Authors. The Journal of Pathology published by John Wiley & Sons Ltd on behalf of Pathological Society of Great Britain and Ireland.
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spelling pubmed-53245962017-03-08 Lung neuroendocrine tumours: deep sequencing of the four World Health Organization histotypes reveals chromatin‐remodelling genes as major players and a prognostic role for TERT, RB1, MEN1 and KMT2D Simbolo, Michele Mafficini, Andrea Sikora, Katarzyna O Fassan, Matteo Barbi, Stefano Corbo, Vincenzo Mastracci, Luca Rusev, Borislav Grillo, Federica Vicentini, Caterina Ferrara, Roberto Pilotto, Sara Davini, Federico Pelosi, Giuseppe Lawlor, Rita T Chilosi, Marco Tortora, Giampaolo Bria, Emilio Fontanini, Gabriella Volante, Marco Scarpa, Aldo J Pathol Original Papers Next‐generation sequencing (NGS) was applied to 148 lung neuroendocrine tumours (LNETs) comprising the four World Health Organization classification categories: 53 typical carcinoid (TCs), 35 atypical carcinoid (ACs), 27 large‐cell neuroendocrine carcinomas, and 33 small‐cell lung carcinomas. A discovery screen was conducted on 46 samples by the use of whole‐exome sequencing and high‐coverage targeted sequencing of 418 genes. Eighty‐eight recurrently mutated genes from both the discovery screen and current literature were verified in the 46 cases of the discovery screen, and validated on additional 102 LNETs by targeted NGS; their prevalence was then evaluated on the whole series. Thirteen of these 88 genes were also evaluated for copy number alterations (CNAs). Carcinoids and carcinomas shared most of the altered genes but with different prevalence rates. When mutations and copy number changes were combined, MEN1 alterations were almost exclusive to carcinoids, whereas alterations of TP53 and RB1 cell cycle regulation genes and PI3K/AKT/mTOR pathway genes were significantly enriched in carcinomas. Conversely, mutations in chromatin‐remodelling genes, including those encoding histone modifiers and members of SWI–SNF complexes, were found at similar rates in carcinoids (45.5%) and carcinomas (55.0%), suggesting a major role in LNET pathogenesis. One AC and one TC showed a hypermutated profile associated with a POLQ damaging mutation. There were fewer CNAs in carcinoids than in carcinomas; however ACs showed a hybrid pattern, whereby gains of TERT, SDHA, RICTOR, PIK3CA, MYCL and SRC were found at rates similar to those in carcinomas, whereas the MEN1 loss rate mirrored that of TCs. Multivariate survival analysis revealed RB1 mutation (p = 0.0005) and TERT copy gain (p = 0.016) as independent predictors of poorer prognosis. MEN1 mutation was associated with poor prognosis in AC (p = 0.0045), whereas KMT2D mutation correlated with longer survival in SCLC (p = 0.0022). In conclusion, molecular profiling may complement histology for better diagnostic definition and prognostic stratification of LNETs. © 2016 The Authors. The Journal of Pathology published by John Wiley & Sons Ltd on behalf of Pathological Society of Great Britain and Ireland. John Wiley & Sons, Ltd 2016-12-29 2017-03 /pmc/articles/PMC5324596/ /pubmed/27873319 http://dx.doi.org/10.1002/path.4853 Text en © 2016 The Authors. The Journal of Pathology published by John Wiley & Sons Ltd on behalf of Pathological Society of Great Britain and Ireland. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Papers
Simbolo, Michele
Mafficini, Andrea
Sikora, Katarzyna O
Fassan, Matteo
Barbi, Stefano
Corbo, Vincenzo
Mastracci, Luca
Rusev, Borislav
Grillo, Federica
Vicentini, Caterina
Ferrara, Roberto
Pilotto, Sara
Davini, Federico
Pelosi, Giuseppe
Lawlor, Rita T
Chilosi, Marco
Tortora, Giampaolo
Bria, Emilio
Fontanini, Gabriella
Volante, Marco
Scarpa, Aldo
Lung neuroendocrine tumours: deep sequencing of the four World Health Organization histotypes reveals chromatin‐remodelling genes as major players and a prognostic role for TERT, RB1, MEN1 and KMT2D
title Lung neuroendocrine tumours: deep sequencing of the four World Health Organization histotypes reveals chromatin‐remodelling genes as major players and a prognostic role for TERT, RB1, MEN1 and KMT2D
title_full Lung neuroendocrine tumours: deep sequencing of the four World Health Organization histotypes reveals chromatin‐remodelling genes as major players and a prognostic role for TERT, RB1, MEN1 and KMT2D
title_fullStr Lung neuroendocrine tumours: deep sequencing of the four World Health Organization histotypes reveals chromatin‐remodelling genes as major players and a prognostic role for TERT, RB1, MEN1 and KMT2D
title_full_unstemmed Lung neuroendocrine tumours: deep sequencing of the four World Health Organization histotypes reveals chromatin‐remodelling genes as major players and a prognostic role for TERT, RB1, MEN1 and KMT2D
title_short Lung neuroendocrine tumours: deep sequencing of the four World Health Organization histotypes reveals chromatin‐remodelling genes as major players and a prognostic role for TERT, RB1, MEN1 and KMT2D
title_sort lung neuroendocrine tumours: deep sequencing of the four world health organization histotypes reveals chromatin‐remodelling genes as major players and a prognostic role for tert, rb1, men1 and kmt2d
topic Original Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5324596/
https://www.ncbi.nlm.nih.gov/pubmed/27873319
http://dx.doi.org/10.1002/path.4853
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