Cargando…

Targeted Next-Generation Sequencing of 117 Routine Clinical Samples Provides Further Insights into the Molecular Landscape of Uveal Melanoma

Uveal melanoma (UM) has well-characterised somatic copy number alterations (SCNA) in chromosomes 1, 3, 6 and 8, in addition to mutations in GNAQ, GNA11, CYSLTR2, PLCB4, BAP1, SF3B1 and EIF1AX, most being linked to metastatic-risk. To gain further insight into the molecular landscape of UM, we design...

Descripción completa

Detalles Bibliográficos
Autores principales: Thornton, Sophie, Coupland, Sarah E., Olohan, Lisa, Sibbring, Julie S., Kenny, John G., Hertz-Fowler, Christiane, Liu, Xuan, Haldenby, Sam, Heimann, Heinrich, Hussain, Rumana, Kipling, Natalie, Taktak, Azzam, Kalirai, Helen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7226611/
https://www.ncbi.nlm.nih.gov/pubmed/32340176
http://dx.doi.org/10.3390/cancers12041039
_version_ 1783534329379422208
author Thornton, Sophie
Coupland, Sarah E.
Olohan, Lisa
Sibbring, Julie S.
Kenny, John G.
Hertz-Fowler, Christiane
Liu, Xuan
Haldenby, Sam
Heimann, Heinrich
Hussain, Rumana
Kipling, Natalie
Taktak, Azzam
Kalirai, Helen
author_facet Thornton, Sophie
Coupland, Sarah E.
Olohan, Lisa
Sibbring, Julie S.
Kenny, John G.
Hertz-Fowler, Christiane
Liu, Xuan
Haldenby, Sam
Heimann, Heinrich
Hussain, Rumana
Kipling, Natalie
Taktak, Azzam
Kalirai, Helen
author_sort Thornton, Sophie
collection PubMed
description Uveal melanoma (UM) has well-characterised somatic copy number alterations (SCNA) in chromosomes 1, 3, 6 and 8, in addition to mutations in GNAQ, GNA11, CYSLTR2, PLCB4, BAP1, SF3B1 and EIF1AX, most being linked to metastatic-risk. To gain further insight into the molecular landscape of UM, we designed a targeted next-generation sequencing (NGS) panel to detect SCNA and mutations in routine clinical UM samples. We compared hybrid-capture and amplicon-based target enrichment methods and tested a larger cohort of primary UM samples on the best performing panel. UM clinical samples processed either as fresh-frozen, formalin-fixed paraffin embedded (FFPE), small intraocular biopsies or following irradiation were successfully profiled using NGS, with hybrid capture outperforming the PCR-based enrichment methodology. We identified monosomy 3 (M3)-UM that were wild-type for BAP1 but harbored SF3B1 mutations, novel frameshift deletions in SF3B1 and EIF1AX, as well as a PLCB4 mutation outside of the hotspot on exon 20 coinciding with a GNAQ mutation in some UM. We observed samples that harboured mutations in both BAP1 and SF3B1, and SF3B1 and EIF1AX, respectively. Novel mutations were also identified in TTC28, KTN1, CSMD1 and TP53BP1. NGS can simultaneously assess SCNA and mutation data in UM, in a reliable and reproducible way, irrespective of sample type or previous processing. BAP1 and SF3B1 mutations, in addition to 8q copy number, are of added importance when determining UM patient outcome.
format Online
Article
Text
id pubmed-7226611
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-72266112020-05-18 Targeted Next-Generation Sequencing of 117 Routine Clinical Samples Provides Further Insights into the Molecular Landscape of Uveal Melanoma Thornton, Sophie Coupland, Sarah E. Olohan, Lisa Sibbring, Julie S. Kenny, John G. Hertz-Fowler, Christiane Liu, Xuan Haldenby, Sam Heimann, Heinrich Hussain, Rumana Kipling, Natalie Taktak, Azzam Kalirai, Helen Cancers (Basel) Article Uveal melanoma (UM) has well-characterised somatic copy number alterations (SCNA) in chromosomes 1, 3, 6 and 8, in addition to mutations in GNAQ, GNA11, CYSLTR2, PLCB4, BAP1, SF3B1 and EIF1AX, most being linked to metastatic-risk. To gain further insight into the molecular landscape of UM, we designed a targeted next-generation sequencing (NGS) panel to detect SCNA and mutations in routine clinical UM samples. We compared hybrid-capture and amplicon-based target enrichment methods and tested a larger cohort of primary UM samples on the best performing panel. UM clinical samples processed either as fresh-frozen, formalin-fixed paraffin embedded (FFPE), small intraocular biopsies or following irradiation were successfully profiled using NGS, with hybrid capture outperforming the PCR-based enrichment methodology. We identified monosomy 3 (M3)-UM that were wild-type for BAP1 but harbored SF3B1 mutations, novel frameshift deletions in SF3B1 and EIF1AX, as well as a PLCB4 mutation outside of the hotspot on exon 20 coinciding with a GNAQ mutation in some UM. We observed samples that harboured mutations in both BAP1 and SF3B1, and SF3B1 and EIF1AX, respectively. Novel mutations were also identified in TTC28, KTN1, CSMD1 and TP53BP1. NGS can simultaneously assess SCNA and mutation data in UM, in a reliable and reproducible way, irrespective of sample type or previous processing. BAP1 and SF3B1 mutations, in addition to 8q copy number, are of added importance when determining UM patient outcome. MDPI 2020-04-23 /pmc/articles/PMC7226611/ /pubmed/32340176 http://dx.doi.org/10.3390/cancers12041039 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Thornton, Sophie
Coupland, Sarah E.
Olohan, Lisa
Sibbring, Julie S.
Kenny, John G.
Hertz-Fowler, Christiane
Liu, Xuan
Haldenby, Sam
Heimann, Heinrich
Hussain, Rumana
Kipling, Natalie
Taktak, Azzam
Kalirai, Helen
Targeted Next-Generation Sequencing of 117 Routine Clinical Samples Provides Further Insights into the Molecular Landscape of Uveal Melanoma
title Targeted Next-Generation Sequencing of 117 Routine Clinical Samples Provides Further Insights into the Molecular Landscape of Uveal Melanoma
title_full Targeted Next-Generation Sequencing of 117 Routine Clinical Samples Provides Further Insights into the Molecular Landscape of Uveal Melanoma
title_fullStr Targeted Next-Generation Sequencing of 117 Routine Clinical Samples Provides Further Insights into the Molecular Landscape of Uveal Melanoma
title_full_unstemmed Targeted Next-Generation Sequencing of 117 Routine Clinical Samples Provides Further Insights into the Molecular Landscape of Uveal Melanoma
title_short Targeted Next-Generation Sequencing of 117 Routine Clinical Samples Provides Further Insights into the Molecular Landscape of Uveal Melanoma
title_sort targeted next-generation sequencing of 117 routine clinical samples provides further insights into the molecular landscape of uveal melanoma
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7226611/
https://www.ncbi.nlm.nih.gov/pubmed/32340176
http://dx.doi.org/10.3390/cancers12041039
work_keys_str_mv AT thorntonsophie targetednextgenerationsequencingof117routineclinicalsamplesprovidesfurtherinsightsintothemolecularlandscapeofuvealmelanoma
AT couplandsarahe targetednextgenerationsequencingof117routineclinicalsamplesprovidesfurtherinsightsintothemolecularlandscapeofuvealmelanoma
AT olohanlisa targetednextgenerationsequencingof117routineclinicalsamplesprovidesfurtherinsightsintothemolecularlandscapeofuvealmelanoma
AT sibbringjulies targetednextgenerationsequencingof117routineclinicalsamplesprovidesfurtherinsightsintothemolecularlandscapeofuvealmelanoma
AT kennyjohng targetednextgenerationsequencingof117routineclinicalsamplesprovidesfurtherinsightsintothemolecularlandscapeofuvealmelanoma
AT hertzfowlerchristiane targetednextgenerationsequencingof117routineclinicalsamplesprovidesfurtherinsightsintothemolecularlandscapeofuvealmelanoma
AT liuxuan targetednextgenerationsequencingof117routineclinicalsamplesprovidesfurtherinsightsintothemolecularlandscapeofuvealmelanoma
AT haldenbysam targetednextgenerationsequencingof117routineclinicalsamplesprovidesfurtherinsightsintothemolecularlandscapeofuvealmelanoma
AT heimannheinrich targetednextgenerationsequencingof117routineclinicalsamplesprovidesfurtherinsightsintothemolecularlandscapeofuvealmelanoma
AT hussainrumana targetednextgenerationsequencingof117routineclinicalsamplesprovidesfurtherinsightsintothemolecularlandscapeofuvealmelanoma
AT kiplingnatalie targetednextgenerationsequencingof117routineclinicalsamplesprovidesfurtherinsightsintothemolecularlandscapeofuvealmelanoma
AT taktakazzam targetednextgenerationsequencingof117routineclinicalsamplesprovidesfurtherinsightsintothemolecularlandscapeofuvealmelanoma
AT kaliraihelen targetednextgenerationsequencingof117routineclinicalsamplesprovidesfurtherinsightsintothemolecularlandscapeofuvealmelanoma