Cargando…

Whole‐exome sequencing defines the mutational landscape of pheochromocytoma and identifies KMT2D as a recurrently mutated gene

As subsets of pheochromocytomas (PCCs) lack a defined molecular etiology, we sought to characterize the mutational landscape of PCCs to identify novel gene candidates involved in disease development. A discovery cohort of 15 PCCs wild type for mutations in PCC susceptibility genes underwent whole‐ex...

Descripción completa

Detalles Bibliográficos
Autores principales: Juhlin, C. Christofer, Stenman, Adam, Haglund, Felix, Clark, Victoria E., Brown, Taylor C., Baranoski, Jacob, Bilguvar, Kaya, Goh, Gerald, Welander, Jenny, Svahn, Fredrika, Rubinstein, Jill C., Caramuta, Stefano, Yasuno, Katsuhito, Günel, Murat, Bäckdahl, Martin, Gimm, Oliver, Söderkvist, Peter, Prasad, Manju L., Korah, Reju, Lifton, Richard P., Carling, Tobias
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4755142/
https://www.ncbi.nlm.nih.gov/pubmed/26032282
http://dx.doi.org/10.1002/gcc.22267
_version_ 1782416152622792704
author Juhlin, C. Christofer
Stenman, Adam
Haglund, Felix
Clark, Victoria E.
Brown, Taylor C.
Baranoski, Jacob
Bilguvar, Kaya
Goh, Gerald
Welander, Jenny
Svahn, Fredrika
Rubinstein, Jill C.
Caramuta, Stefano
Yasuno, Katsuhito
Günel, Murat
Bäckdahl, Martin
Gimm, Oliver
Söderkvist, Peter
Prasad, Manju L.
Korah, Reju
Lifton, Richard P.
Carling, Tobias
author_facet Juhlin, C. Christofer
Stenman, Adam
Haglund, Felix
Clark, Victoria E.
Brown, Taylor C.
Baranoski, Jacob
Bilguvar, Kaya
Goh, Gerald
Welander, Jenny
Svahn, Fredrika
Rubinstein, Jill C.
Caramuta, Stefano
Yasuno, Katsuhito
Günel, Murat
Bäckdahl, Martin
Gimm, Oliver
Söderkvist, Peter
Prasad, Manju L.
Korah, Reju
Lifton, Richard P.
Carling, Tobias
author_sort Juhlin, C. Christofer
collection PubMed
description As subsets of pheochromocytomas (PCCs) lack a defined molecular etiology, we sought to characterize the mutational landscape of PCCs to identify novel gene candidates involved in disease development. A discovery cohort of 15 PCCs wild type for mutations in PCC susceptibility genes underwent whole‐exome sequencing, and an additional 83 PCCs served as a verification cohort for targeted sequencing of candidate mutations. A low rate of nonsilent single nucleotide variants (SNVs) was detected (6.1/sample). Somatic HRAS and EPAS1 mutations were observed in one case each, whereas the remaining 13 cases did not exhibit variants in established PCC genes. SNVs aggregated in apoptosis‐related pathways, and mutations in COSMIC genes not previously reported in PCCs included ZAN, MITF, WDTC1, and CAMTA1. Two somatic mutations and one constitutional variant in the well‐established cancer gene lysine (K)‐specific methyltransferase 2D (KMT2D, MLL2) were discovered in one sample each, prompting KMT2D screening using focused exome‐sequencing in the verification cohort. An additional 11 PCCs displayed KMT2D variants, of which two were recurrent. In total, missense KMT2D variants were found in 14 (11 somatic, two constitutional, one undetermined) of 99 PCCs (14%). Five cases displayed somatic mutations in the functional FYR/SET domains of KMT2D, constituting 36% of all KMT2D‐mutated PCCs. KMT2D expression was upregulated in PCCs compared to normal adrenals, and KMT2D overexpression positively affected cell migration in a PCC cell line. We conclude that KMT2D represents a recurrently mutated gene with potential implication for PCC development. © 2015 The Authors. Genes, Chromosomes & Cancer Published by Wiley Periodicals, Inc.
format Online
Article
Text
id pubmed-4755142
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-47551422016-02-26 Whole‐exome sequencing defines the mutational landscape of pheochromocytoma and identifies KMT2D as a recurrently mutated gene Juhlin, C. Christofer Stenman, Adam Haglund, Felix Clark, Victoria E. Brown, Taylor C. Baranoski, Jacob Bilguvar, Kaya Goh, Gerald Welander, Jenny Svahn, Fredrika Rubinstein, Jill C. Caramuta, Stefano Yasuno, Katsuhito Günel, Murat Bäckdahl, Martin Gimm, Oliver Söderkvist, Peter Prasad, Manju L. Korah, Reju Lifton, Richard P. Carling, Tobias Genes Chromosomes Cancer Research Articles As subsets of pheochromocytomas (PCCs) lack a defined molecular etiology, we sought to characterize the mutational landscape of PCCs to identify novel gene candidates involved in disease development. A discovery cohort of 15 PCCs wild type for mutations in PCC susceptibility genes underwent whole‐exome sequencing, and an additional 83 PCCs served as a verification cohort for targeted sequencing of candidate mutations. A low rate of nonsilent single nucleotide variants (SNVs) was detected (6.1/sample). Somatic HRAS and EPAS1 mutations were observed in one case each, whereas the remaining 13 cases did not exhibit variants in established PCC genes. SNVs aggregated in apoptosis‐related pathways, and mutations in COSMIC genes not previously reported in PCCs included ZAN, MITF, WDTC1, and CAMTA1. Two somatic mutations and one constitutional variant in the well‐established cancer gene lysine (K)‐specific methyltransferase 2D (KMT2D, MLL2) were discovered in one sample each, prompting KMT2D screening using focused exome‐sequencing in the verification cohort. An additional 11 PCCs displayed KMT2D variants, of which two were recurrent. In total, missense KMT2D variants were found in 14 (11 somatic, two constitutional, one undetermined) of 99 PCCs (14%). Five cases displayed somatic mutations in the functional FYR/SET domains of KMT2D, constituting 36% of all KMT2D‐mutated PCCs. KMT2D expression was upregulated in PCCs compared to normal adrenals, and KMT2D overexpression positively affected cell migration in a PCC cell line. We conclude that KMT2D represents a recurrently mutated gene with potential implication for PCC development. © 2015 The Authors. Genes, Chromosomes & Cancer Published by Wiley Periodicals, Inc. John Wiley and Sons Inc. 2015-05-29 2015-09 /pmc/articles/PMC4755142/ /pubmed/26032282 http://dx.doi.org/10.1002/gcc.22267 Text en © 2015 The Authors. Genes, Chromosomes & Cancer Published by Wiley Periodicals, Inc. This is an open access article under the terms of the Creative Commons Attribution‐NonCommercial‐NoDerivs (http://creativecommons.org/licenses/by-nc-nd/3.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Research Articles
Juhlin, C. Christofer
Stenman, Adam
Haglund, Felix
Clark, Victoria E.
Brown, Taylor C.
Baranoski, Jacob
Bilguvar, Kaya
Goh, Gerald
Welander, Jenny
Svahn, Fredrika
Rubinstein, Jill C.
Caramuta, Stefano
Yasuno, Katsuhito
Günel, Murat
Bäckdahl, Martin
Gimm, Oliver
Söderkvist, Peter
Prasad, Manju L.
Korah, Reju
Lifton, Richard P.
Carling, Tobias
Whole‐exome sequencing defines the mutational landscape of pheochromocytoma and identifies KMT2D as a recurrently mutated gene
title Whole‐exome sequencing defines the mutational landscape of pheochromocytoma and identifies KMT2D as a recurrently mutated gene
title_full Whole‐exome sequencing defines the mutational landscape of pheochromocytoma and identifies KMT2D as a recurrently mutated gene
title_fullStr Whole‐exome sequencing defines the mutational landscape of pheochromocytoma and identifies KMT2D as a recurrently mutated gene
title_full_unstemmed Whole‐exome sequencing defines the mutational landscape of pheochromocytoma and identifies KMT2D as a recurrently mutated gene
title_short Whole‐exome sequencing defines the mutational landscape of pheochromocytoma and identifies KMT2D as a recurrently mutated gene
title_sort whole‐exome sequencing defines the mutational landscape of pheochromocytoma and identifies kmt2d as a recurrently mutated gene
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4755142/
https://www.ncbi.nlm.nih.gov/pubmed/26032282
http://dx.doi.org/10.1002/gcc.22267
work_keys_str_mv AT juhlincchristofer wholeexomesequencingdefinesthemutationallandscapeofpheochromocytomaandidentifieskmt2dasarecurrentlymutatedgene
AT stenmanadam wholeexomesequencingdefinesthemutationallandscapeofpheochromocytomaandidentifieskmt2dasarecurrentlymutatedgene
AT haglundfelix wholeexomesequencingdefinesthemutationallandscapeofpheochromocytomaandidentifieskmt2dasarecurrentlymutatedgene
AT clarkvictoriae wholeexomesequencingdefinesthemutationallandscapeofpheochromocytomaandidentifieskmt2dasarecurrentlymutatedgene
AT browntaylorc wholeexomesequencingdefinesthemutationallandscapeofpheochromocytomaandidentifieskmt2dasarecurrentlymutatedgene
AT baranoskijacob wholeexomesequencingdefinesthemutationallandscapeofpheochromocytomaandidentifieskmt2dasarecurrentlymutatedgene
AT bilguvarkaya wholeexomesequencingdefinesthemutationallandscapeofpheochromocytomaandidentifieskmt2dasarecurrentlymutatedgene
AT gohgerald wholeexomesequencingdefinesthemutationallandscapeofpheochromocytomaandidentifieskmt2dasarecurrentlymutatedgene
AT welanderjenny wholeexomesequencingdefinesthemutationallandscapeofpheochromocytomaandidentifieskmt2dasarecurrentlymutatedgene
AT svahnfredrika wholeexomesequencingdefinesthemutationallandscapeofpheochromocytomaandidentifieskmt2dasarecurrentlymutatedgene
AT rubinsteinjillc wholeexomesequencingdefinesthemutationallandscapeofpheochromocytomaandidentifieskmt2dasarecurrentlymutatedgene
AT caramutastefano wholeexomesequencingdefinesthemutationallandscapeofpheochromocytomaandidentifieskmt2dasarecurrentlymutatedgene
AT yasunokatsuhito wholeexomesequencingdefinesthemutationallandscapeofpheochromocytomaandidentifieskmt2dasarecurrentlymutatedgene
AT gunelmurat wholeexomesequencingdefinesthemutationallandscapeofpheochromocytomaandidentifieskmt2dasarecurrentlymutatedgene
AT backdahlmartin wholeexomesequencingdefinesthemutationallandscapeofpheochromocytomaandidentifieskmt2dasarecurrentlymutatedgene
AT gimmoliver wholeexomesequencingdefinesthemutationallandscapeofpheochromocytomaandidentifieskmt2dasarecurrentlymutatedgene
AT soderkvistpeter wholeexomesequencingdefinesthemutationallandscapeofpheochromocytomaandidentifieskmt2dasarecurrentlymutatedgene
AT prasadmanjul wholeexomesequencingdefinesthemutationallandscapeofpheochromocytomaandidentifieskmt2dasarecurrentlymutatedgene
AT korahreju wholeexomesequencingdefinesthemutationallandscapeofpheochromocytomaandidentifieskmt2dasarecurrentlymutatedgene
AT liftonrichardp wholeexomesequencingdefinesthemutationallandscapeofpheochromocytomaandidentifieskmt2dasarecurrentlymutatedgene
AT carlingtobias wholeexomesequencingdefinesthemutationallandscapeofpheochromocytomaandidentifieskmt2dasarecurrentlymutatedgene