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Whole exome sequencing in 75 high-risk families with validation and replication in independent case-control studies identifies TANGO2, OR5H14, and CHAD as new prostate cancer susceptibility genes

Prostate cancer (PCa) susceptibility is defined by a continuum from rare, high-penetrance to common, low-penetrance alleles. Research to date has concentrated on identification of variants at the ends of that continuum. Taking an alternate approach, we focused on the important but elusive class of l...

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Autores principales: Karyadi, Danielle M., Geybels, Milan S., Karlins, Eric, Decker, Brennan, McIntosh, Laura, Hutchinson, Amy, Kolb, Suzanne, McDonnell, Shannon K., Hicks, Belynda, Middha, Sumit, FitzGerald, Liesel M., DeRycke, Melissa S., Yeager, Meredith, Schaid, Daniel J., Chanock, Stephen J., Thibodeau, Stephen N., Berndt, Sonja I., Stanford, Janet L., Ostrander, Elaine A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5341753/
https://www.ncbi.nlm.nih.gov/pubmed/27902461
http://dx.doi.org/10.18632/oncotarget.13646
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author Karyadi, Danielle M.
Geybels, Milan S.
Karlins, Eric
Decker, Brennan
McIntosh, Laura
Hutchinson, Amy
Kolb, Suzanne
McDonnell, Shannon K.
Hicks, Belynda
Middha, Sumit
FitzGerald, Liesel M.
DeRycke, Melissa S.
Yeager, Meredith
Schaid, Daniel J.
Chanock, Stephen J.
Thibodeau, Stephen N.
Berndt, Sonja I.
Stanford, Janet L.
Ostrander, Elaine A.
author_facet Karyadi, Danielle M.
Geybels, Milan S.
Karlins, Eric
Decker, Brennan
McIntosh, Laura
Hutchinson, Amy
Kolb, Suzanne
McDonnell, Shannon K.
Hicks, Belynda
Middha, Sumit
FitzGerald, Liesel M.
DeRycke, Melissa S.
Yeager, Meredith
Schaid, Daniel J.
Chanock, Stephen J.
Thibodeau, Stephen N.
Berndt, Sonja I.
Stanford, Janet L.
Ostrander, Elaine A.
author_sort Karyadi, Danielle M.
collection PubMed
description Prostate cancer (PCa) susceptibility is defined by a continuum from rare, high-penetrance to common, low-penetrance alleles. Research to date has concentrated on identification of variants at the ends of that continuum. Taking an alternate approach, we focused on the important but elusive class of low-frequency, moderately penetrant variants by performing disease model-based variant filtering of whole exome sequence data from 75 hereditary PCa families. Analysis of 341 candidate risk variants identified nine variants significantly associated with increased PCa risk in a population-based, case-control study of 2,495 men. In an independent nested case-control study of 7,121 men, there was risk association evidence for TANGO2 p.Ser17Ter and the established HOXB13 p.Gly84Glu variant. Meta-analysis combining the case-control studies identified two additional variants suggestively associated with risk, OR5H14 p.Met59Val and CHAD p.Ala342Asp. The TANGO2 and HOXB13 variants co-occurred in cases more often than expected by chance and never in controls. Finally, TANGO2 p.Ser17Ter was associated with aggressive disease in both case-control studies separately. Our analyses identified three new PCa susceptibility alleles in the TANGO2, OR5H14 and CHAD genes that not only segregate in multiple high-risk families but are also of importance in altering disease risk for men from the general population. This is the first successful study to utilize sequencing in high-risk families for the express purpose of identifying low-frequency, moderately penetrant PCa risk mutations.
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spelling pubmed-53417532017-03-09 Whole exome sequencing in 75 high-risk families with validation and replication in independent case-control studies identifies TANGO2, OR5H14, and CHAD as new prostate cancer susceptibility genes Karyadi, Danielle M. Geybels, Milan S. Karlins, Eric Decker, Brennan McIntosh, Laura Hutchinson, Amy Kolb, Suzanne McDonnell, Shannon K. Hicks, Belynda Middha, Sumit FitzGerald, Liesel M. DeRycke, Melissa S. Yeager, Meredith Schaid, Daniel J. Chanock, Stephen J. Thibodeau, Stephen N. Berndt, Sonja I. Stanford, Janet L. Ostrander, Elaine A. Oncotarget Research Paper Prostate cancer (PCa) susceptibility is defined by a continuum from rare, high-penetrance to common, low-penetrance alleles. Research to date has concentrated on identification of variants at the ends of that continuum. Taking an alternate approach, we focused on the important but elusive class of low-frequency, moderately penetrant variants by performing disease model-based variant filtering of whole exome sequence data from 75 hereditary PCa families. Analysis of 341 candidate risk variants identified nine variants significantly associated with increased PCa risk in a population-based, case-control study of 2,495 men. In an independent nested case-control study of 7,121 men, there was risk association evidence for TANGO2 p.Ser17Ter and the established HOXB13 p.Gly84Glu variant. Meta-analysis combining the case-control studies identified two additional variants suggestively associated with risk, OR5H14 p.Met59Val and CHAD p.Ala342Asp. The TANGO2 and HOXB13 variants co-occurred in cases more often than expected by chance and never in controls. Finally, TANGO2 p.Ser17Ter was associated with aggressive disease in both case-control studies separately. Our analyses identified three new PCa susceptibility alleles in the TANGO2, OR5H14 and CHAD genes that not only segregate in multiple high-risk families but are also of importance in altering disease risk for men from the general population. This is the first successful study to utilize sequencing in high-risk families for the express purpose of identifying low-frequency, moderately penetrant PCa risk mutations. Impact Journals LLC 2016-11-26 /pmc/articles/PMC5341753/ /pubmed/27902461 http://dx.doi.org/10.18632/oncotarget.13646 Text en Copyright: © 2017 Karyadi et al. http://creativecommons.org/licenses/by/3.0/ 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 credited.
spellingShingle Research Paper
Karyadi, Danielle M.
Geybels, Milan S.
Karlins, Eric
Decker, Brennan
McIntosh, Laura
Hutchinson, Amy
Kolb, Suzanne
McDonnell, Shannon K.
Hicks, Belynda
Middha, Sumit
FitzGerald, Liesel M.
DeRycke, Melissa S.
Yeager, Meredith
Schaid, Daniel J.
Chanock, Stephen J.
Thibodeau, Stephen N.
Berndt, Sonja I.
Stanford, Janet L.
Ostrander, Elaine A.
Whole exome sequencing in 75 high-risk families with validation and replication in independent case-control studies identifies TANGO2, OR5H14, and CHAD as new prostate cancer susceptibility genes
title Whole exome sequencing in 75 high-risk families with validation and replication in independent case-control studies identifies TANGO2, OR5H14, and CHAD as new prostate cancer susceptibility genes
title_full Whole exome sequencing in 75 high-risk families with validation and replication in independent case-control studies identifies TANGO2, OR5H14, and CHAD as new prostate cancer susceptibility genes
title_fullStr Whole exome sequencing in 75 high-risk families with validation and replication in independent case-control studies identifies TANGO2, OR5H14, and CHAD as new prostate cancer susceptibility genes
title_full_unstemmed Whole exome sequencing in 75 high-risk families with validation and replication in independent case-control studies identifies TANGO2, OR5H14, and CHAD as new prostate cancer susceptibility genes
title_short Whole exome sequencing in 75 high-risk families with validation and replication in independent case-control studies identifies TANGO2, OR5H14, and CHAD as new prostate cancer susceptibility genes
title_sort whole exome sequencing in 75 high-risk families with validation and replication in independent case-control studies identifies tango2, or5h14, and chad as new prostate cancer susceptibility genes
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5341753/
https://www.ncbi.nlm.nih.gov/pubmed/27902461
http://dx.doi.org/10.18632/oncotarget.13646
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