Cargando…

HSD3B and Gene-Gene Interactions in a Pathway-Based Analysis of Genetic Susceptibility to Bladder Cancer

Bladder cancer is the 4(th) most common cancer among men in the U.S. We analyzed variant genotypes hypothesized to modify major biological processes involved in bladder carcinogenesis, including hormone regulation, apoptosis, DNA repair, immune surveillance, metabolism, proliferation, and telomere m...

Descripción completa

Detalles Bibliográficos
Autores principales: Andrew, Angeline S., Hu, Ting, Gu, Jian, Gui, Jiang, Ye, Yuanqing, Marsit, Carmen J., Kelsey, Karl T., Schned, Alan R., Tanyos, Sam A., Pendleton, Eben M., Mason, Rebecca A., Morlock, Elaine V., Zens, Michael S., Li, Zhongze, Moore, Jason H., Wu, Xifeng, Karagas, Margaret R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3526593/
https://www.ncbi.nlm.nih.gov/pubmed/23284679
http://dx.doi.org/10.1371/journal.pone.0051301
_version_ 1782253596237103104
author Andrew, Angeline S.
Hu, Ting
Gu, Jian
Gui, Jiang
Ye, Yuanqing
Marsit, Carmen J.
Kelsey, Karl T.
Schned, Alan R.
Tanyos, Sam A.
Pendleton, Eben M.
Mason, Rebecca A.
Morlock, Elaine V.
Zens, Michael S.
Li, Zhongze
Moore, Jason H.
Wu, Xifeng
Karagas, Margaret R.
author_facet Andrew, Angeline S.
Hu, Ting
Gu, Jian
Gui, Jiang
Ye, Yuanqing
Marsit, Carmen J.
Kelsey, Karl T.
Schned, Alan R.
Tanyos, Sam A.
Pendleton, Eben M.
Mason, Rebecca A.
Morlock, Elaine V.
Zens, Michael S.
Li, Zhongze
Moore, Jason H.
Wu, Xifeng
Karagas, Margaret R.
author_sort Andrew, Angeline S.
collection PubMed
description Bladder cancer is the 4(th) most common cancer among men in the U.S. We analyzed variant genotypes hypothesized to modify major biological processes involved in bladder carcinogenesis, including hormone regulation, apoptosis, DNA repair, immune surveillance, metabolism, proliferation, and telomere maintenance. Logistic regression was used to assess the relationship between genetic variation affecting these processes and susceptibility in 563 genotyped urothelial cell carcinoma cases and 863 controls enrolled in a case–control study of incident bladder cancer conducted in New Hampshire, U.S. We evaluated gene–gene interactions using Multifactor Dimensionality Reduction (MDR) and Statistical Epistasis Network analysis. The 3′UTR flanking variant form of the hormone regulation gene HSD3B2 was associated with increased bladder cancer risk in the New Hampshire population (adjusted OR 1.85 95%CI 1.31–2.62). This finding was successfully replicated in the Texas Bladder Cancer Study with 957 controls, 497 cases (adjusted OR 3.66 95%CI 1.06–12.63). The effect of this prevalent SNP was stronger among males (OR 2.13 95%CI 1.40–3.25) than females (OR 1.56 95%CI 0.83–2.95), (SNP-gender interaction P = 0.048). We also identified a SNP-SNP interaction between T-cell activation related genes GATA3 and CD81 (interaction P = 0.0003). The fact that bladder cancer incidence is 3–4 times higher in males suggests the involvement of hormone levels. This biologic process-based analysis suggests candidate susceptibility markers and supports the theory that disrupted hormone regulation plays a role in bladder carcinogenesis.
format Online
Article
Text
id pubmed-3526593
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-35265932013-01-02 HSD3B and Gene-Gene Interactions in a Pathway-Based Analysis of Genetic Susceptibility to Bladder Cancer Andrew, Angeline S. Hu, Ting Gu, Jian Gui, Jiang Ye, Yuanqing Marsit, Carmen J. Kelsey, Karl T. Schned, Alan R. Tanyos, Sam A. Pendleton, Eben M. Mason, Rebecca A. Morlock, Elaine V. Zens, Michael S. Li, Zhongze Moore, Jason H. Wu, Xifeng Karagas, Margaret R. PLoS One Research Article Bladder cancer is the 4(th) most common cancer among men in the U.S. We analyzed variant genotypes hypothesized to modify major biological processes involved in bladder carcinogenesis, including hormone regulation, apoptosis, DNA repair, immune surveillance, metabolism, proliferation, and telomere maintenance. Logistic regression was used to assess the relationship between genetic variation affecting these processes and susceptibility in 563 genotyped urothelial cell carcinoma cases and 863 controls enrolled in a case–control study of incident bladder cancer conducted in New Hampshire, U.S. We evaluated gene–gene interactions using Multifactor Dimensionality Reduction (MDR) and Statistical Epistasis Network analysis. The 3′UTR flanking variant form of the hormone regulation gene HSD3B2 was associated with increased bladder cancer risk in the New Hampshire population (adjusted OR 1.85 95%CI 1.31–2.62). This finding was successfully replicated in the Texas Bladder Cancer Study with 957 controls, 497 cases (adjusted OR 3.66 95%CI 1.06–12.63). The effect of this prevalent SNP was stronger among males (OR 2.13 95%CI 1.40–3.25) than females (OR 1.56 95%CI 0.83–2.95), (SNP-gender interaction P = 0.048). We also identified a SNP-SNP interaction between T-cell activation related genes GATA3 and CD81 (interaction P = 0.0003). The fact that bladder cancer incidence is 3–4 times higher in males suggests the involvement of hormone levels. This biologic process-based analysis suggests candidate susceptibility markers and supports the theory that disrupted hormone regulation plays a role in bladder carcinogenesis. Public Library of Science 2012-12-19 /pmc/articles/PMC3526593/ /pubmed/23284679 http://dx.doi.org/10.1371/journal.pone.0051301 Text en © 2012 Andrew 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
Andrew, Angeline S.
Hu, Ting
Gu, Jian
Gui, Jiang
Ye, Yuanqing
Marsit, Carmen J.
Kelsey, Karl T.
Schned, Alan R.
Tanyos, Sam A.
Pendleton, Eben M.
Mason, Rebecca A.
Morlock, Elaine V.
Zens, Michael S.
Li, Zhongze
Moore, Jason H.
Wu, Xifeng
Karagas, Margaret R.
HSD3B and Gene-Gene Interactions in a Pathway-Based Analysis of Genetic Susceptibility to Bladder Cancer
title HSD3B and Gene-Gene Interactions in a Pathway-Based Analysis of Genetic Susceptibility to Bladder Cancer
title_full HSD3B and Gene-Gene Interactions in a Pathway-Based Analysis of Genetic Susceptibility to Bladder Cancer
title_fullStr HSD3B and Gene-Gene Interactions in a Pathway-Based Analysis of Genetic Susceptibility to Bladder Cancer
title_full_unstemmed HSD3B and Gene-Gene Interactions in a Pathway-Based Analysis of Genetic Susceptibility to Bladder Cancer
title_short HSD3B and Gene-Gene Interactions in a Pathway-Based Analysis of Genetic Susceptibility to Bladder Cancer
title_sort hsd3b and gene-gene interactions in a pathway-based analysis of genetic susceptibility to bladder cancer
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3526593/
https://www.ncbi.nlm.nih.gov/pubmed/23284679
http://dx.doi.org/10.1371/journal.pone.0051301
work_keys_str_mv AT andrewangelines hsd3bandgenegeneinteractionsinapathwaybasedanalysisofgeneticsusceptibilitytobladdercancer
AT huting hsd3bandgenegeneinteractionsinapathwaybasedanalysisofgeneticsusceptibilitytobladdercancer
AT gujian hsd3bandgenegeneinteractionsinapathwaybasedanalysisofgeneticsusceptibilitytobladdercancer
AT guijiang hsd3bandgenegeneinteractionsinapathwaybasedanalysisofgeneticsusceptibilitytobladdercancer
AT yeyuanqing hsd3bandgenegeneinteractionsinapathwaybasedanalysisofgeneticsusceptibilitytobladdercancer
AT marsitcarmenj hsd3bandgenegeneinteractionsinapathwaybasedanalysisofgeneticsusceptibilitytobladdercancer
AT kelseykarlt hsd3bandgenegeneinteractionsinapathwaybasedanalysisofgeneticsusceptibilitytobladdercancer
AT schnedalanr hsd3bandgenegeneinteractionsinapathwaybasedanalysisofgeneticsusceptibilitytobladdercancer
AT tanyossama hsd3bandgenegeneinteractionsinapathwaybasedanalysisofgeneticsusceptibilitytobladdercancer
AT pendletonebenm hsd3bandgenegeneinteractionsinapathwaybasedanalysisofgeneticsusceptibilitytobladdercancer
AT masonrebeccaa hsd3bandgenegeneinteractionsinapathwaybasedanalysisofgeneticsusceptibilitytobladdercancer
AT morlockelainev hsd3bandgenegeneinteractionsinapathwaybasedanalysisofgeneticsusceptibilitytobladdercancer
AT zensmichaels hsd3bandgenegeneinteractionsinapathwaybasedanalysisofgeneticsusceptibilitytobladdercancer
AT lizhongze hsd3bandgenegeneinteractionsinapathwaybasedanalysisofgeneticsusceptibilitytobladdercancer
AT moorejasonh hsd3bandgenegeneinteractionsinapathwaybasedanalysisofgeneticsusceptibilitytobladdercancer
AT wuxifeng hsd3bandgenegeneinteractionsinapathwaybasedanalysisofgeneticsusceptibilitytobladdercancer
AT karagasmargaretr hsd3bandgenegeneinteractionsinapathwaybasedanalysisofgeneticsusceptibilitytobladdercancer