Literature DB >> 33293427

A Large-Scale Association Study Detects Novel Rare Variants, Risk Genes, Functional Elements, and Polygenic Architecture of Prostate Cancer Susceptibility.

Nima C Emami1,2, Taylor B Cavazos1, Sara R Rashkin2, Clinton L Cario1,2, Rebecca E Graff2, Caroline G Tai2, Joel A Mefford3, Linda Kachuri2, Eunice Wan4, Simon Wong4, David Aaronson5, Joseph Presti5, Laurel A Habel6, Jun Shan6, Dilrini K Ranatunga6, Chun R Chao7, Nirupa R Ghai7, Eric Jorgenson6, Lori C Sakoda6, Mark N Kvale4, Pui-Yan Kwok3,4, Catherine Schaefer6, Neil Risch1,2,3,4,6,8, Thomas J Hoffmann1,2,4, Stephen K Van Den Eeden6,9, John S Witte10,2,3,4,8,9.   

Abstract

To identify rare variants associated with prostate cancer susceptibility and better characterize the mechanisms and cumulative disease risk associated with common risk variants, we conducted an integrated study of prostate cancer genetic etiology in two cohorts using custom genotyping microarrays, large imputation reference panels, and functional annotation approaches. Specifically, 11,984 men (6,196 prostate cancer cases and 5,788 controls) of European ancestry from Northern California Kaiser Permanente were genotyped and meta-analyzed with 196,269 men of European ancestry (7,917 prostate cancer cases and 188,352 controls) from the UK Biobank. Three novel loci, including two rare variants (European ancestry minor allele frequency < 0.01, at 3p21.31 and 8p12), were significant genome wide in a meta-analysis. Gene-based rare variant tests implicated a known prostate cancer gene (HOXB13), as well as a novel candidate gene (ILDR1), which encodes a receptor highly expressed in prostate tissue and is related to the B7/CD28 family of T-cell immune checkpoint markers. Haplotypic patterns of long-range linkage disequilibrium were observed for rare genetic variants at HOXB13 and other loci, reflecting their evolutionary history. In addition, a polygenic risk score (PRS) of 188 prostate cancer variants was strongly associated with risk (90th vs. 40th-60th percentile OR = 2.62, P = 2.55 × 10-191). Many of the 188 variants exhibited functional signatures of gene expression regulation or transcription factor binding, including a 6-fold difference in log-probability of androgen receptor binding at the variant rs2680708 (17q22). Rare variant and PRS associations, with concomitant functional interpretation of risk mechanisms, can help clarify the full genetic architecture of prostate cancer and other complex traits. SIGNIFICANCE: This study maps the biological relationships between diverse risk factors for prostate cancer, integrating different functional datasets to interpret and model genome-wide data from over 200,000 men with and without prostate cancer.See related commentary by Lachance, p. 1637. ©2020 American Association for Cancer Research.

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Year:  2020        PMID: 33293427      PMCID: PMC8137514          DOI: 10.1158/0008-5472.CAN-20-2635

Source DB:  PubMed          Journal:  Cancer Res        ISSN: 0008-5472            Impact factor:   13.312


  59 in total

1.  A large multiethnic genome-wide association study of prostate cancer identifies novel risk variants and substantial ethnic differences.

Authors:  Thomas J Hoffmann; Stephen K Van Den Eeden; Lori C Sakoda; Eric Jorgenson; Laurel A Habel; Rebecca E Graff; Michael N Passarelli; Clinton L Cario; Nima C Emami; Chun R Chao; Nirupa R Ghai; Jun Shan; Dilrini K Ranatunga; Charles P Quesenberry; David Aaronson; Joseph Presti; Zhaoming Wang; Sonja I Berndt; Stephen J Chanock; Shannon K McDonnell; Amy J French; Daniel J Schaid; Stephen N Thibodeau; Qiyuan Li; Matthew L Freedman; Kathryn L Penney; Lorelei A Mucci; Christopher A Haiman; Brian E Henderson; Daniela Seminara; Mark N Kvale; Pui-Yan Kwok; Catherine Schaefer; Neil Risch; John S Witte
Journal:  Cancer Discov       Date:  2015-06-01       Impact factor: 39.397

2.  Oct1 regulates cell growth of LNCaP cells and is a prognostic factor for prostate cancer.

Authors:  Daisuke Obinata; Ken-ichi Takayama; Tomohiko Urano; Taro Murata; Jinpei Kumagai; Tetsuya Fujimura; Kazuhiro Ikeda; Kuniko Horie-Inoue; Yukio Homma; Yasuyoshi Ouchi; Satoru Takahashi; Satoshi Inoue
Journal:  Int J Cancer       Date:  2011-05-28       Impact factor: 7.396

3.  Integrative Genomic Analysis of OCT1 Reveals Coordinated Regulation of Androgen Receptor in Advanced Prostate Cancer.

Authors:  Ken-Ichi Takayama; Yutaka Suzuki; Shinichiro Yamamoto; Daisuke Obinata; Satoru Takahashi; Satoshi Inoue
Journal:  Endocrinology       Date:  2019-02-01       Impact factor: 4.736

4.  The contribution of rare variation to prostate cancer heritability.

Authors:  Nicholas Mancuso; Nadin Rohland; Kristin A Rand; Arti Tandon; Alexander Allen; Dominique Quinque; Swapan Mallick; Heng Li; Alex Stram; Xin Sheng; Zsofia Kote-Jarai; Douglas F Easton; Rosalind A Eeles; Loic Le Marchand; Alex Lubwama; Daniel Stram; Stephen Watya; David V Conti; Brian Henderson; Christopher A Haiman; Bogdan Pasaniuc; David Reich
Journal:  Nat Genet       Date:  2015-11-16       Impact factor: 38.330

5.  Second-generation PLINK: rising to the challenge of larger and richer datasets.

Authors:  Christopher C Chang; Carson C Chow; Laurent Cam Tellier; Shashaank Vattikuti; Shaun M Purcell; James J Lee
Journal:  Gigascience       Date:  2015-02-25       Impact factor: 6.524

6.  RVTESTS: an efficient and comprehensive tool for rare variant association analysis using sequence data.

Authors:  Xiaowei Zhan; Youna Hu; Bingshan Li; Goncalo R Abecasis; Dajiang J Liu
Journal:  Bioinformatics       Date:  2016-02-15       Impact factor: 6.937

7.  The transcription factor ZEB1 promotes an aggressive phenotype in prostate cancer cell lines.

Authors:  Octavio Orellana-Serradell; Daniela Herrera; Enrique A Castellon; Hector R Contreras
Journal:  Asian J Androl       Date:  2018 May-Jun       Impact factor: 3.285

8.  Statistical modeling of transcription factor binding affinities predicts regulatory interactions.

Authors:  Thomas Manke; Helge G Roider; Martin Vingron
Journal:  PLoS Comput Biol       Date:  2008-03-21       Impact factor: 4.475

9.  Large-scale transcriptome-wide association study identifies new prostate cancer risk regions.

Authors:  Nicholas Mancuso; Simon Gayther; Alexander Gusev; Wei Zheng; Kathryn L Penney; Zsofia Kote-Jarai; Rosalind Eeles; Matthew Freedman; Christopher Haiman; Bogdan Pasaniuc
Journal:  Nat Commun       Date:  2018-10-04       Impact factor: 14.919

10.  The UK Biobank resource with deep phenotyping and genomic data.

Authors:  Clare Bycroft; Colin Freeman; Desislava Petkova; Gavin Band; Lloyd T Elliott; Kevin Sharp; Allan Motyer; Damjan Vukcevic; Olivier Delaneau; Jared O'Connell; Adrian Cortes; Samantha Welsh; Alan Young; Mark Effingham; Gil McVean; Stephen Leslie; Naomi Allen; Peter Donnelly; Jonathan Marchini
Journal:  Nature       Date:  2018-10-10       Impact factor: 49.962

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  5 in total

1.  Integrated microRNA-mRNA Expression Profiling Identifies Novel Targets and Networks Associated with Autism.

Authors:  Pritmohinder S Gill; Harsh Dweep; Shannon Rose; Priyankara J Wickramasinghe; Kanan K Vyas; Sandra McCullough; Patricia A Porter-Gill; Richard E Frye
Journal:  J Pers Med       Date:  2022-06-01

Review 2.  Genetic Variants in Transcription Factor Binding Sites in Humans: Triggered by Natural Selection and Triggers of Diseases.

Authors:  Chia-Chun Tseng; Man-Chun Wong; Wei-Ting Liao; Chung-Jen Chen; Su-Chen Lee; Jeng-Hsien Yen; Shun-Jen Chang
Journal:  Int J Mol Sci       Date:  2021-04-18       Impact factor: 5.923

3.  Genome-wide and transcriptome-wide association studies of mammographic density phenotypes reveal novel loci.

Authors:  Hongjie Chen; Shaoqi Fan; Jennifer Stone; Deborah J Thompson; Julie Douglas; Shuai Li; Christopher Scott; Manjeet K Bolla; Qin Wang; Joe Dennis; Kyriaki Michailidou; Christopher Li; Ulrike Peters; John L Hopper; Melissa C Southey; Tu Nguyen-Dumont; Tuong L Nguyen; Peter A Fasching; Annika Behrens; Gemma Cadby; Rachel A Murphy; Kristan Aronson; Anthony Howell; Susan Astley; Fergus Couch; Janet Olson; Roger L Milne; Graham G Giles; Christopher A Haiman; Gertraud Maskarinec; Stacey Winham; Esther M John; Allison Kurian; Heather Eliassen; Irene Andrulis; D Gareth Evans; William G Newman; Per Hall; Kamila Czene; Anthony Swerdlow; Michael Jones; Marina Pollan; Pablo Fernandez-Navarro; Daniel S McConnell; Vessela N Kristensen; Joseph H Rothstein; Pei Wang; Laurel A Habel; Weiva Sieh; Alison M Dunning; Paul D P Pharoah; Douglas F Easton; Gretchen L Gierach; Rulla M Tamimi; Celine M Vachon; Sara Lindström
Journal:  Breast Cancer Res       Date:  2022-04-12       Impact factor: 6.466

4.  Analyses of the expression and prognosis of ILDR1 in human gastric cancer.

Authors:  Li Wang; Rujun Zhai; Guodong Song; Yong Wang
Journal:  Heliyon       Date:  2022-08-27

5.  Inclusion of variants discovered from diverse populations improves polygenic risk score transferability.

Authors:  Taylor B Cavazos; John S Witte
Journal:  HGG Adv       Date:  2020-12-02
  5 in total

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