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Assessment of polygenic architecture and risk prediction based on common variants across fourteen cancers.

Yan Dora ZhangAmber N HursonHaoyu ZhangParichoy Pal ChoudhuryDouglas F EastonJonathan BeesleyJacques SimardPer HallKyriaki MichailidouJoe G DennisMarjanka K SchmidtJenny Chang-ClaudePuya GharahkhaniDavid C WhitemanPeter T CampbellMichael HoffmeisterMark E JenkinsUlrike PetersLi HsuStephen B GruberGraham CaseyStephanie L SchmitTracy A O'MaraAmanda B SpurdleDeborah J ThompsonIan P M TomlinsonImmaculata De VivoMaria Teresa LandiMatthew H LawMark M IlesFlorence DemenaisRajiv KumarStuart MacgregorD Timothy Timothy BishopSarah V WardMelissa L BondyRichard S HoulstonJohn K WienckeBeatrice MelinJill S Barnholtz-SloanBen KinnersleyMargaret R WrenschChristopher Ian AmosRayjean J HungPaul J BrennanJames McKayNeil E CaporasoSonja I BerndtBrenda M BirmannNicola J CampPeter KraftNathaniel RothmanSusan L SlagerAndrew BerchuckPaul David Peter PharoahThomas A SellersSimon A GaytherCeleste L PearceEllen L GoodeJoellen M SchildkrautKirsten B MoysichLaufey T AmundadottirEric J JacobsAlison P KleinGloria M PetersenHarvey A RischRachel Z Stolzenberg-SolomonBrian M WolpinDonghui LiRosalind A EelesChristopher A HaimanZsofia Kote-JaraiFredrick R SchumacherAli Amin Al OlamaMark P PurdueGhislaine SceloMarlene D DalgaardMark H GreeneTom GrotmolPeter A KanetskyKatherine A McGlynnKatherine L NathansonClare TurnbullFredrik Wiklundnull nullnull nullnull nullnull nullnull nullnull nullnull nullnull nullnull nullnull nullnull nullnull nullnull nullnull nullnull nullnull nullnull nullnull nullStephen J ChanockNilanjan ChatterjeeMontserrat Garcia-Closas
Published in: Nature communications (2020)
Genome-wide association studies (GWAS) have led to the identification of hundreds of susceptibility loci across cancers, but the impact of further studies remains uncertain. Here we analyse summary-level data from GWAS of European ancestry across fourteen cancer sites to estimate the number of common susceptibility variants (polygenicity) and underlying effect-size distribution. All cancers show a high degree of polygenicity, involving at a minimum of thousands of loci. We project that sample sizes required to explain 80% of GWAS heritability vary from 60,000 cases for testicular to over 1,000,000 cases for lung cancer. The maximum relative risk achievable for subjects at the 99th risk percentile of underlying polygenic risk scores (PRS), compared to average risk, ranges from 12 for testicular to 2.5 for ovarian cancer. We show that PRS have potential for risk stratification for cancers of breast, colon and prostate, but less so for others because of modest heritability and lower incidence.
Keyphrases
  • genome wide association
  • genome wide association study
  • prostate cancer
  • risk factors
  • genome wide
  • gene expression
  • papillary thyroid
  • machine learning
  • climate change
  • electronic health record
  • case control
  • human health