Cargando…

Whole Genome Analyses of a Well-Differentiated Liposarcoma Reveals Novel SYT1 and DDR2 Rearrangements

Liposarcoma is the most common soft tissue sarcoma, but little is known about the genomic basis of this disease. Given the low cell content of this tumor type, we utilized flow cytometry to isolate the diploid normal and aneuploid tumor populations from a well-differentiated liposarcoma prior to arr...

Descripción completa

Detalles Bibliográficos
Autores principales: Egan, Jan B., Barrett, Michael T., Champion, Mia D., Middha, Sumit, Lenkiewicz, Elizabeth, Evers, Lisa, Francis, Princy, Schmidt, Jessica, Shi, Chang-Xin, Van Wier, Scott, Badar, Sandra, Ahmann, Gregory, Kortuem, K. Martin, Boczek, Nicole J., Fonseca, Rafael, Craig, David W., Carpten, John D., Borad, Mitesh J., Stewart, A. Keith
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3914808/
https://www.ncbi.nlm.nih.gov/pubmed/24505276
http://dx.doi.org/10.1371/journal.pone.0087113
_version_ 1782302468596563968
author Egan, Jan B.
Barrett, Michael T.
Champion, Mia D.
Middha, Sumit
Lenkiewicz, Elizabeth
Evers, Lisa
Francis, Princy
Schmidt, Jessica
Shi, Chang-Xin
Van Wier, Scott
Badar, Sandra
Ahmann, Gregory
Kortuem, K. Martin
Boczek, Nicole J.
Fonseca, Rafael
Craig, David W.
Carpten, John D.
Borad, Mitesh J.
Stewart, A. Keith
author_facet Egan, Jan B.
Barrett, Michael T.
Champion, Mia D.
Middha, Sumit
Lenkiewicz, Elizabeth
Evers, Lisa
Francis, Princy
Schmidt, Jessica
Shi, Chang-Xin
Van Wier, Scott
Badar, Sandra
Ahmann, Gregory
Kortuem, K. Martin
Boczek, Nicole J.
Fonseca, Rafael
Craig, David W.
Carpten, John D.
Borad, Mitesh J.
Stewart, A. Keith
author_sort Egan, Jan B.
collection PubMed
description Liposarcoma is the most common soft tissue sarcoma, but little is known about the genomic basis of this disease. Given the low cell content of this tumor type, we utilized flow cytometry to isolate the diploid normal and aneuploid tumor populations from a well-differentiated liposarcoma prior to array comparative genomic hybridization and whole genome sequencing. This work revealed massive highly focal amplifications throughout the aneuploid tumor genome including MDM2, a gene that has previously been found to be amplified in well-differentiated liposarcoma. Structural analysis revealed massive rearrangement of chromosome 12 and 11 gene fusions, some of which may be part of double minute chromosomes commonly present in well-differentiated liposarcoma. We identified a hotspot of genomic instability localized to a region of chromosome 12 that includes a highly conserved, putative L1 retrotransposon element, LOC100507498 which resides within a gene cluster (NAV3, SYT1, PAWR) where 6 of the 11 fusion events occurred. Interestingly, a potential gene fusion was also identified in amplified DDR2, which is a potential therapeutic target of kinase inhibitors such as dastinib, that are not routinely used in the treatment of patients with liposarcoma. Furthermore, 7 somatic, damaging single nucleotide variants have also been identified, including D125N in the PTPRQ protein. In conclusion, this work is the first to report the entire genome of a well-differentiated liposarcoma with novel chromosomal rearrangements associated with amplification of therapeutically targetable genes such as MDM2 and DDR2.
format Online
Article
Text
id pubmed-3914808
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-39148082014-02-06 Whole Genome Analyses of a Well-Differentiated Liposarcoma Reveals Novel SYT1 and DDR2 Rearrangements Egan, Jan B. Barrett, Michael T. Champion, Mia D. Middha, Sumit Lenkiewicz, Elizabeth Evers, Lisa Francis, Princy Schmidt, Jessica Shi, Chang-Xin Van Wier, Scott Badar, Sandra Ahmann, Gregory Kortuem, K. Martin Boczek, Nicole J. Fonseca, Rafael Craig, David W. Carpten, John D. Borad, Mitesh J. Stewart, A. Keith PLoS One Research Article Liposarcoma is the most common soft tissue sarcoma, but little is known about the genomic basis of this disease. Given the low cell content of this tumor type, we utilized flow cytometry to isolate the diploid normal and aneuploid tumor populations from a well-differentiated liposarcoma prior to array comparative genomic hybridization and whole genome sequencing. This work revealed massive highly focal amplifications throughout the aneuploid tumor genome including MDM2, a gene that has previously been found to be amplified in well-differentiated liposarcoma. Structural analysis revealed massive rearrangement of chromosome 12 and 11 gene fusions, some of which may be part of double minute chromosomes commonly present in well-differentiated liposarcoma. We identified a hotspot of genomic instability localized to a region of chromosome 12 that includes a highly conserved, putative L1 retrotransposon element, LOC100507498 which resides within a gene cluster (NAV3, SYT1, PAWR) where 6 of the 11 fusion events occurred. Interestingly, a potential gene fusion was also identified in amplified DDR2, which is a potential therapeutic target of kinase inhibitors such as dastinib, that are not routinely used in the treatment of patients with liposarcoma. Furthermore, 7 somatic, damaging single nucleotide variants have also been identified, including D125N in the PTPRQ protein. In conclusion, this work is the first to report the entire genome of a well-differentiated liposarcoma with novel chromosomal rearrangements associated with amplification of therapeutically targetable genes such as MDM2 and DDR2. Public Library of Science 2014-02-05 /pmc/articles/PMC3914808/ /pubmed/24505276 http://dx.doi.org/10.1371/journal.pone.0087113 Text en © 2014 Egan et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Egan, Jan B.
Barrett, Michael T.
Champion, Mia D.
Middha, Sumit
Lenkiewicz, Elizabeth
Evers, Lisa
Francis, Princy
Schmidt, Jessica
Shi, Chang-Xin
Van Wier, Scott
Badar, Sandra
Ahmann, Gregory
Kortuem, K. Martin
Boczek, Nicole J.
Fonseca, Rafael
Craig, David W.
Carpten, John D.
Borad, Mitesh J.
Stewart, A. Keith
Whole Genome Analyses of a Well-Differentiated Liposarcoma Reveals Novel SYT1 and DDR2 Rearrangements
title Whole Genome Analyses of a Well-Differentiated Liposarcoma Reveals Novel SYT1 and DDR2 Rearrangements
title_full Whole Genome Analyses of a Well-Differentiated Liposarcoma Reveals Novel SYT1 and DDR2 Rearrangements
title_fullStr Whole Genome Analyses of a Well-Differentiated Liposarcoma Reveals Novel SYT1 and DDR2 Rearrangements
title_full_unstemmed Whole Genome Analyses of a Well-Differentiated Liposarcoma Reveals Novel SYT1 and DDR2 Rearrangements
title_short Whole Genome Analyses of a Well-Differentiated Liposarcoma Reveals Novel SYT1 and DDR2 Rearrangements
title_sort whole genome analyses of a well-differentiated liposarcoma reveals novel syt1 and ddr2 rearrangements
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3914808/
https://www.ncbi.nlm.nih.gov/pubmed/24505276
http://dx.doi.org/10.1371/journal.pone.0087113
work_keys_str_mv AT eganjanb wholegenomeanalysesofawelldifferentiatedliposarcomarevealsnovelsyt1andddr2rearrangements
AT barrettmichaelt wholegenomeanalysesofawelldifferentiatedliposarcomarevealsnovelsyt1andddr2rearrangements
AT championmiad wholegenomeanalysesofawelldifferentiatedliposarcomarevealsnovelsyt1andddr2rearrangements
AT middhasumit wholegenomeanalysesofawelldifferentiatedliposarcomarevealsnovelsyt1andddr2rearrangements
AT lenkiewiczelizabeth wholegenomeanalysesofawelldifferentiatedliposarcomarevealsnovelsyt1andddr2rearrangements
AT everslisa wholegenomeanalysesofawelldifferentiatedliposarcomarevealsnovelsyt1andddr2rearrangements
AT francisprincy wholegenomeanalysesofawelldifferentiatedliposarcomarevealsnovelsyt1andddr2rearrangements
AT schmidtjessica wholegenomeanalysesofawelldifferentiatedliposarcomarevealsnovelsyt1andddr2rearrangements
AT shichangxin wholegenomeanalysesofawelldifferentiatedliposarcomarevealsnovelsyt1andddr2rearrangements
AT vanwierscott wholegenomeanalysesofawelldifferentiatedliposarcomarevealsnovelsyt1andddr2rearrangements
AT badarsandra wholegenomeanalysesofawelldifferentiatedliposarcomarevealsnovelsyt1andddr2rearrangements
AT ahmanngregory wholegenomeanalysesofawelldifferentiatedliposarcomarevealsnovelsyt1andddr2rearrangements
AT kortuemkmartin wholegenomeanalysesofawelldifferentiatedliposarcomarevealsnovelsyt1andddr2rearrangements
AT boczeknicolej wholegenomeanalysesofawelldifferentiatedliposarcomarevealsnovelsyt1andddr2rearrangements
AT fonsecarafael wholegenomeanalysesofawelldifferentiatedliposarcomarevealsnovelsyt1andddr2rearrangements
AT craigdavidw wholegenomeanalysesofawelldifferentiatedliposarcomarevealsnovelsyt1andddr2rearrangements
AT carptenjohnd wholegenomeanalysesofawelldifferentiatedliposarcomarevealsnovelsyt1andddr2rearrangements
AT boradmiteshj wholegenomeanalysesofawelldifferentiatedliposarcomarevealsnovelsyt1andddr2rearrangements
AT stewartakeith wholegenomeanalysesofawelldifferentiatedliposarcomarevealsnovelsyt1andddr2rearrangements