Cargando…

Genome-wide analyses implicate 33 loci in heritable dog osteosarcoma, including regulatory variants near CDKN2A/B

BACKGROUND: Canine osteosarcoma is clinically nearly identical to the human disease, but is common and highly heritable, making genetic dissection feasible. RESULTS: Through genome-wide association analyses in three breeds (greyhounds, Rottweilers, and Irish wolfhounds), we identify 33 inherited ris...

Descripción completa

Detalles Bibliográficos
Autores principales: Karlsson, Elinor K, Sigurdsson, Snaevar, Ivansson, Emma, Thomas, Rachael, Elvers, Ingegerd, Wright, Jason, Howald, Cedric, Tonomura, Noriko, Perloski, Michele, Swofford, Ross, Biagi, Tara, Fryc, Sarah, Anderson, Nathan, Courtay-Cahen, Celine, Youell, Lisa, Ricketts, Sally L, Mandlebaum, Sarah, Rivera, Patricio, von Euler, Henrik, Kisseberth, William C, London, Cheryl A, Lander, Eric S, Couto, Guillermo, Comstock, Kenine, Starkey, Mike P, Modiano, Jaime F, Breen, Matthew, Lindblad-Toh, Kerstin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4053774/
https://www.ncbi.nlm.nih.gov/pubmed/24330828
http://dx.doi.org/10.1186/gb-2013-14-12-r132
_version_ 1782320436598538240
author Karlsson, Elinor K
Sigurdsson, Snaevar
Ivansson, Emma
Thomas, Rachael
Elvers, Ingegerd
Wright, Jason
Howald, Cedric
Tonomura, Noriko
Perloski, Michele
Swofford, Ross
Biagi, Tara
Fryc, Sarah
Anderson, Nathan
Courtay-Cahen, Celine
Youell, Lisa
Ricketts, Sally L
Mandlebaum, Sarah
Rivera, Patricio
von Euler, Henrik
Kisseberth, William C
London, Cheryl A
Lander, Eric S
Couto, Guillermo
Comstock, Kenine
Starkey, Mike P
Modiano, Jaime F
Breen, Matthew
Lindblad-Toh, Kerstin
author_facet Karlsson, Elinor K
Sigurdsson, Snaevar
Ivansson, Emma
Thomas, Rachael
Elvers, Ingegerd
Wright, Jason
Howald, Cedric
Tonomura, Noriko
Perloski, Michele
Swofford, Ross
Biagi, Tara
Fryc, Sarah
Anderson, Nathan
Courtay-Cahen, Celine
Youell, Lisa
Ricketts, Sally L
Mandlebaum, Sarah
Rivera, Patricio
von Euler, Henrik
Kisseberth, William C
London, Cheryl A
Lander, Eric S
Couto, Guillermo
Comstock, Kenine
Starkey, Mike P
Modiano, Jaime F
Breen, Matthew
Lindblad-Toh, Kerstin
author_sort Karlsson, Elinor K
collection PubMed
description BACKGROUND: Canine osteosarcoma is clinically nearly identical to the human disease, but is common and highly heritable, making genetic dissection feasible. RESULTS: Through genome-wide association analyses in three breeds (greyhounds, Rottweilers, and Irish wolfhounds), we identify 33 inherited risk loci explaining 55% to 85% of phenotype variance in each breed. The greyhound locus exhibiting the strongest association, located 150 kilobases upstream of the genes CDKN2A/B, is also the most rearranged locus in canine osteosarcoma tumors. The top germline candidate variant is found at a >90% frequency in Rottweilers and Irish wolfhounds, and alters an evolutionarily constrained element that we show has strong enhancer activity in human osteosarcoma cells. In all three breeds, osteosarcoma-associated loci and regions of reduced heterozygosity are enriched for genes in pathways connected to bone differentiation and growth. Several pathways, including one of genes regulated by miR124, are also enriched for somatic copy-number changes in tumors. CONCLUSIONS: Mapping a complex cancer in multiple dog breeds reveals a polygenic spectrum of germline risk factors pointing to specific pathways as drivers of disease.
format Online
Article
Text
id pubmed-4053774
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-40537742014-06-12 Genome-wide analyses implicate 33 loci in heritable dog osteosarcoma, including regulatory variants near CDKN2A/B Karlsson, Elinor K Sigurdsson, Snaevar Ivansson, Emma Thomas, Rachael Elvers, Ingegerd Wright, Jason Howald, Cedric Tonomura, Noriko Perloski, Michele Swofford, Ross Biagi, Tara Fryc, Sarah Anderson, Nathan Courtay-Cahen, Celine Youell, Lisa Ricketts, Sally L Mandlebaum, Sarah Rivera, Patricio von Euler, Henrik Kisseberth, William C London, Cheryl A Lander, Eric S Couto, Guillermo Comstock, Kenine Starkey, Mike P Modiano, Jaime F Breen, Matthew Lindblad-Toh, Kerstin Genome Biol Research BACKGROUND: Canine osteosarcoma is clinically nearly identical to the human disease, but is common and highly heritable, making genetic dissection feasible. RESULTS: Through genome-wide association analyses in three breeds (greyhounds, Rottweilers, and Irish wolfhounds), we identify 33 inherited risk loci explaining 55% to 85% of phenotype variance in each breed. The greyhound locus exhibiting the strongest association, located 150 kilobases upstream of the genes CDKN2A/B, is also the most rearranged locus in canine osteosarcoma tumors. The top germline candidate variant is found at a >90% frequency in Rottweilers and Irish wolfhounds, and alters an evolutionarily constrained element that we show has strong enhancer activity in human osteosarcoma cells. In all three breeds, osteosarcoma-associated loci and regions of reduced heterozygosity are enriched for genes in pathways connected to bone differentiation and growth. Several pathways, including one of genes regulated by miR124, are also enriched for somatic copy-number changes in tumors. CONCLUSIONS: Mapping a complex cancer in multiple dog breeds reveals a polygenic spectrum of germline risk factors pointing to specific pathways as drivers of disease. BioMed Central 2013 2013-12-12 /pmc/articles/PMC4053774/ /pubmed/24330828 http://dx.doi.org/10.1186/gb-2013-14-12-r132 Text en Copyright © 2013 Karlsson et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Karlsson, Elinor K
Sigurdsson, Snaevar
Ivansson, Emma
Thomas, Rachael
Elvers, Ingegerd
Wright, Jason
Howald, Cedric
Tonomura, Noriko
Perloski, Michele
Swofford, Ross
Biagi, Tara
Fryc, Sarah
Anderson, Nathan
Courtay-Cahen, Celine
Youell, Lisa
Ricketts, Sally L
Mandlebaum, Sarah
Rivera, Patricio
von Euler, Henrik
Kisseberth, William C
London, Cheryl A
Lander, Eric S
Couto, Guillermo
Comstock, Kenine
Starkey, Mike P
Modiano, Jaime F
Breen, Matthew
Lindblad-Toh, Kerstin
Genome-wide analyses implicate 33 loci in heritable dog osteosarcoma, including regulatory variants near CDKN2A/B
title Genome-wide analyses implicate 33 loci in heritable dog osteosarcoma, including regulatory variants near CDKN2A/B
title_full Genome-wide analyses implicate 33 loci in heritable dog osteosarcoma, including regulatory variants near CDKN2A/B
title_fullStr Genome-wide analyses implicate 33 loci in heritable dog osteosarcoma, including regulatory variants near CDKN2A/B
title_full_unstemmed Genome-wide analyses implicate 33 loci in heritable dog osteosarcoma, including regulatory variants near CDKN2A/B
title_short Genome-wide analyses implicate 33 loci in heritable dog osteosarcoma, including regulatory variants near CDKN2A/B
title_sort genome-wide analyses implicate 33 loci in heritable dog osteosarcoma, including regulatory variants near cdkn2a/b
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4053774/
https://www.ncbi.nlm.nih.gov/pubmed/24330828
http://dx.doi.org/10.1186/gb-2013-14-12-r132
work_keys_str_mv AT karlssonelinork genomewideanalysesimplicate33lociinheritabledogosteosarcomaincludingregulatoryvariantsnearcdkn2ab
AT sigurdssonsnaevar genomewideanalysesimplicate33lociinheritabledogosteosarcomaincludingregulatoryvariantsnearcdkn2ab
AT ivanssonemma genomewideanalysesimplicate33lociinheritabledogosteosarcomaincludingregulatoryvariantsnearcdkn2ab
AT thomasrachael genomewideanalysesimplicate33lociinheritabledogosteosarcomaincludingregulatoryvariantsnearcdkn2ab
AT elversingegerd genomewideanalysesimplicate33lociinheritabledogosteosarcomaincludingregulatoryvariantsnearcdkn2ab
AT wrightjason genomewideanalysesimplicate33lociinheritabledogosteosarcomaincludingregulatoryvariantsnearcdkn2ab
AT howaldcedric genomewideanalysesimplicate33lociinheritabledogosteosarcomaincludingregulatoryvariantsnearcdkn2ab
AT tonomuranoriko genomewideanalysesimplicate33lociinheritabledogosteosarcomaincludingregulatoryvariantsnearcdkn2ab
AT perloskimichele genomewideanalysesimplicate33lociinheritabledogosteosarcomaincludingregulatoryvariantsnearcdkn2ab
AT swoffordross genomewideanalysesimplicate33lociinheritabledogosteosarcomaincludingregulatoryvariantsnearcdkn2ab
AT biagitara genomewideanalysesimplicate33lociinheritabledogosteosarcomaincludingregulatoryvariantsnearcdkn2ab
AT frycsarah genomewideanalysesimplicate33lociinheritabledogosteosarcomaincludingregulatoryvariantsnearcdkn2ab
AT andersonnathan genomewideanalysesimplicate33lociinheritabledogosteosarcomaincludingregulatoryvariantsnearcdkn2ab
AT courtaycahenceline genomewideanalysesimplicate33lociinheritabledogosteosarcomaincludingregulatoryvariantsnearcdkn2ab
AT youelllisa genomewideanalysesimplicate33lociinheritabledogosteosarcomaincludingregulatoryvariantsnearcdkn2ab
AT rickettssallyl genomewideanalysesimplicate33lociinheritabledogosteosarcomaincludingregulatoryvariantsnearcdkn2ab
AT mandlebaumsarah genomewideanalysesimplicate33lociinheritabledogosteosarcomaincludingregulatoryvariantsnearcdkn2ab
AT riverapatricio genomewideanalysesimplicate33lociinheritabledogosteosarcomaincludingregulatoryvariantsnearcdkn2ab
AT voneulerhenrik genomewideanalysesimplicate33lociinheritabledogosteosarcomaincludingregulatoryvariantsnearcdkn2ab
AT kisseberthwilliamc genomewideanalysesimplicate33lociinheritabledogosteosarcomaincludingregulatoryvariantsnearcdkn2ab
AT londoncheryla genomewideanalysesimplicate33lociinheritabledogosteosarcomaincludingregulatoryvariantsnearcdkn2ab
AT landererics genomewideanalysesimplicate33lociinheritabledogosteosarcomaincludingregulatoryvariantsnearcdkn2ab
AT coutoguillermo genomewideanalysesimplicate33lociinheritabledogosteosarcomaincludingregulatoryvariantsnearcdkn2ab
AT comstockkenine genomewideanalysesimplicate33lociinheritabledogosteosarcomaincludingregulatoryvariantsnearcdkn2ab
AT starkeymikep genomewideanalysesimplicate33lociinheritabledogosteosarcomaincludingregulatoryvariantsnearcdkn2ab
AT modianojaimef genomewideanalysesimplicate33lociinheritabledogosteosarcomaincludingregulatoryvariantsnearcdkn2ab
AT breenmatthew genomewideanalysesimplicate33lociinheritabledogosteosarcomaincludingregulatoryvariantsnearcdkn2ab
AT lindbladtohkerstin genomewideanalysesimplicate33lociinheritabledogosteosarcomaincludingregulatoryvariantsnearcdkn2ab