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author Newell, Felicity
Kong, Yan
Wilmott, James S.
Johansson, Peter A.
Ferguson, Peter M.
Cui, Chuanliang
Li, Zhongwu
Kazakoff, Stephen H.
Burke, Hazel
Dodds, Tristan J.
Patch, Ann-Marie
Nones, Katia
Tembe, Varsha
Shang, Ping
van der Weyden, Louise
Wong, Kim
Holmes, Oliver
Lo, Serigne
Leonard, Conrad
Wood, Scott
Xu, Qinying
Rawson, Robert V.
Mukhopadhyay, Pamela
Dummer, Reinhard
Levesque, Mitchell P.
Jönsson, Göran
Wang, Xuan
Yeh, Iwei
Wu, Hong
Joseph, Nancy
Bastian, Boris C.
Long, Georgina V.
Spillane, Andrew J.
Shannon, Kerwin F.
Thompson, John F.
Saw, Robyn P. M.
Adams, David J.
Si, Lu
Pearson, John V.
Hayward, Nicholas K.
Waddell, Nicola
Mann, Graham J.
Guo, Jun
Scolyer, Richard A.
author_facet Newell, Felicity
Kong, Yan
Wilmott, James S.
Johansson, Peter A.
Ferguson, Peter M.
Cui, Chuanliang
Li, Zhongwu
Kazakoff, Stephen H.
Burke, Hazel
Dodds, Tristan J.
Patch, Ann-Marie
Nones, Katia
Tembe, Varsha
Shang, Ping
van der Weyden, Louise
Wong, Kim
Holmes, Oliver
Lo, Serigne
Leonard, Conrad
Wood, Scott
Xu, Qinying
Rawson, Robert V.
Mukhopadhyay, Pamela
Dummer, Reinhard
Levesque, Mitchell P.
Jönsson, Göran
Wang, Xuan
Yeh, Iwei
Wu, Hong
Joseph, Nancy
Bastian, Boris C.
Long, Georgina V.
Spillane, Andrew J.
Shannon, Kerwin F.
Thompson, John F.
Saw, Robyn P. M.
Adams, David J.
Si, Lu
Pearson, John V.
Hayward, Nicholas K.
Waddell, Nicola
Mann, Graham J.
Guo, Jun
Scolyer, Richard A.
author_sort Newell, Felicity
collection PubMed
description Knowledge of key drivers and therapeutic targets in mucosal melanoma is limited due to the paucity of comprehensive mutation data on this rare tumor type. To better understand the genomic landscape of mucosal melanoma, here we describe whole genome sequencing analysis of 67 tumors and validation of driver gene mutations by exome sequencing of 45 tumors. Tumors have a low point mutation burden and high numbers of structural variants, including recurrent structural rearrangements targeting TERT, CDK4 and MDM2. Significantly mutated genes are NRAS, BRAF, NF1, KIT, SF3B1, TP53, SPRED1, ATRX, HLA-A and CHD8. SF3B1 mutations occur more commonly in female genital and anorectal melanomas and CTNNB1 mutations implicate a role for WNT signaling defects in the genesis of some mucosal melanomas. TERT aberrations and ATRX mutations are associated with alterations in telomere length. Mutation profiles of the majority of mucosal melanomas suggest potential susceptibility to CDK4/6 and/or MEK inhibitors.
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spelling pubmed-66393232019-07-22 Whole-genome landscape of mucosal melanoma reveals diverse drivers and therapeutic targets Newell, Felicity Kong, Yan Wilmott, James S. Johansson, Peter A. Ferguson, Peter M. Cui, Chuanliang Li, Zhongwu Kazakoff, Stephen H. Burke, Hazel Dodds, Tristan J. Patch, Ann-Marie Nones, Katia Tembe, Varsha Shang, Ping van der Weyden, Louise Wong, Kim Holmes, Oliver Lo, Serigne Leonard, Conrad Wood, Scott Xu, Qinying Rawson, Robert V. Mukhopadhyay, Pamela Dummer, Reinhard Levesque, Mitchell P. Jönsson, Göran Wang, Xuan Yeh, Iwei Wu, Hong Joseph, Nancy Bastian, Boris C. Long, Georgina V. Spillane, Andrew J. Shannon, Kerwin F. Thompson, John F. Saw, Robyn P. M. Adams, David J. Si, Lu Pearson, John V. Hayward, Nicholas K. Waddell, Nicola Mann, Graham J. Guo, Jun Scolyer, Richard A. Nat Commun Article Knowledge of key drivers and therapeutic targets in mucosal melanoma is limited due to the paucity of comprehensive mutation data on this rare tumor type. To better understand the genomic landscape of mucosal melanoma, here we describe whole genome sequencing analysis of 67 tumors and validation of driver gene mutations by exome sequencing of 45 tumors. Tumors have a low point mutation burden and high numbers of structural variants, including recurrent structural rearrangements targeting TERT, CDK4 and MDM2. Significantly mutated genes are NRAS, BRAF, NF1, KIT, SF3B1, TP53, SPRED1, ATRX, HLA-A and CHD8. SF3B1 mutations occur more commonly in female genital and anorectal melanomas and CTNNB1 mutations implicate a role for WNT signaling defects in the genesis of some mucosal melanomas. TERT aberrations and ATRX mutations are associated with alterations in telomere length. Mutation profiles of the majority of mucosal melanomas suggest potential susceptibility to CDK4/6 and/or MEK inhibitors. Nature Publishing Group UK 2019-07-18 /pmc/articles/PMC6639323/ /pubmed/31320640 http://dx.doi.org/10.1038/s41467-019-11107-x Text en © The Author(s) 2019 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Newell, Felicity
Kong, Yan
Wilmott, James S.
Johansson, Peter A.
Ferguson, Peter M.
Cui, Chuanliang
Li, Zhongwu
Kazakoff, Stephen H.
Burke, Hazel
Dodds, Tristan J.
Patch, Ann-Marie
Nones, Katia
Tembe, Varsha
Shang, Ping
van der Weyden, Louise
Wong, Kim
Holmes, Oliver
Lo, Serigne
Leonard, Conrad
Wood, Scott
Xu, Qinying
Rawson, Robert V.
Mukhopadhyay, Pamela
Dummer, Reinhard
Levesque, Mitchell P.
Jönsson, Göran
Wang, Xuan
Yeh, Iwei
Wu, Hong
Joseph, Nancy
Bastian, Boris C.
Long, Georgina V.
Spillane, Andrew J.
Shannon, Kerwin F.
Thompson, John F.
Saw, Robyn P. M.
Adams, David J.
Si, Lu
Pearson, John V.
Hayward, Nicholas K.
Waddell, Nicola
Mann, Graham J.
Guo, Jun
Scolyer, Richard A.
Whole-genome landscape of mucosal melanoma reveals diverse drivers and therapeutic targets
title Whole-genome landscape of mucosal melanoma reveals diverse drivers and therapeutic targets
title_full Whole-genome landscape of mucosal melanoma reveals diverse drivers and therapeutic targets
title_fullStr Whole-genome landscape of mucosal melanoma reveals diverse drivers and therapeutic targets
title_full_unstemmed Whole-genome landscape of mucosal melanoma reveals diverse drivers and therapeutic targets
title_short Whole-genome landscape of mucosal melanoma reveals diverse drivers and therapeutic targets
title_sort whole-genome landscape of mucosal melanoma reveals diverse drivers and therapeutic targets
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6639323/
https://www.ncbi.nlm.nih.gov/pubmed/31320640
http://dx.doi.org/10.1038/s41467-019-11107-x
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