학술논문

A Likelihood Ratio Approach for Utilizing Case-Control Data in the Clinical Classification of Rare Sequence Variants: Application to BRCA1 and BRCA2
Document Type
article
Author
Zanti, MariaO'Mahony, Denise GParsons, Michael TLi, HongyanDennis, JoeAittomäkkiki, KristiinaAndrulis, Irene LAnton-Culver, HodaAronson, Kristan JAugustinsson, AnnelieBecher, HeikoBojesen, Stig EBolla, Manjeet KBrenner, HermannBrown, Melissa ABuys, Saundra SCanzian, FedericoCaputo, Sandrine MCastelao, Jose EChang-Claude, JennyCollaborators, GC-HBOC studyCzene, KamilaDaly, Mary BDe Nicolo, ArcangelaDevilee, PeterDörk, ThiloDunning, Alison MDwek, MiriamEccles, Diana MEngel, ChristophEvans, D GarethFasching, Peter AGago-Dominguez, ManuelaGarcía-Closas, MontserratGarcía-Sáenz, José AGentry-Maharaj, AleksandraGiele, Willemina RR Geurts-Giles, Graham GGlendon, GordGoldberg, Mark SGarcia, Encarna B GómezGüendert, MelanieGuénel, PascalHahnen, EricHaiman, Christopher AHall, PerHamann, UteHarkness, Elaine FHogervorst, Frans BLHollestelle, AntoinetteHoppe, ReinerHopper, John LHoudayer, ClaudeHoulston, Richard SHowell, AnthonyInvestigators, ABCTBJakimovska, MilenaJakubowska, AnnaJernström, HelenaJohn, Esther MKaaks, RudolfKitahara, Cari MKoutros, StellaKraft, PeterKristensen, Vessela NLacey, James VLambrechts, DietherLéoné, MelanieLindblom, AnnikaLubiński, JanLush, MichaelMannermaa, ArtoManoochehri, MehdiManoukian, SiranoushMargolin, SaraMartinez, Maria ElenaMenon, UshaMilne, Roger LMonteiro, Alvaro NMurphy, Rachel ANeuhausen, Susan LNevanlinna, HeliNewman, William GOffit, KennethPark, Sue KJames, PaulPeterlongo, PaoloPeto, JulianPlaseska-Karanfilska, DijanaPunie, KevinRadice, PaoloRashid, Muhammad URennert, GadRomero, AtochaRosenberg, Efraim HSaloustros, EmmanouilSandler, Dale PSchmidt, Marjanka KSchmutzler, Rita KShu, Xiao-Ou
Source
Subject
Biological Sciences
Biomedical and Clinical Sciences
Oncology and Carcinogenesis
Genetics
Cancer
Prevention
Biotechnology
Human Genome
Breast Cancer
Women's Health
Genetic Testing
2.1 Biological and endogenous factors
Aetiology
Good Health and Well Being
Humans
Case-Control Studies
BRCA2 Protein
Genetic Predisposition to Disease
Female
BRCA1 Protein
Breast Neoplasms
Likelihood Functions
Genetic Variation
Penetrance
GC-HBOC study Collaborators
ABCTB Investigators
ACMG/AMP
BRCA
PS4
VUS
case-control
likelihood ratio
variant classification
Clinical Sciences
Genetics & Heredity
Clinical sciences
Language
Abstract
A large number of variants identified through clinical genetic testing in disease susceptibility genes, are of uncertain significance (VUS). Following the recommendations of the American College of Medical Genetics and Genomics (ACMG) and Association for Molecular Pathology (AMP), the frequency in case-control datasets (PS4 criterion), can inform their interpretation. We present a novel case-control likelihood ratio-based method that incorporates gene-specific age-related penetrance. We demonstrate the utility of this method in the analysis of simulated and real datasets. In the analyses of simulated data, the likelihood ratio method was more powerful compared to other methods. Likelihood ratios were calculated for a case-control dataset of BRCA1 and BRCA2 variants from the Breast Cancer Association Consortium (BCAC), and compared with logistic regression results. A larger number of variants reached evidence in favor of pathogenicity, and a substantial number of variants had evidence against pathogenicity - findings that would not have been reached using other case-control analysis methods. Our novel method provides greater power to classify rare variants compared to classical case-control methods. As an initiative from the ENIGMA Analytical Working Group, we provide user-friendly scripts and pre-formatted excel calculators for implementation of the method for rare variants in BRCA1, BRCA2 and other high-risk genes with known penetrance.