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  4. Association test using copy number profile curves (CONCUR) enhances power in rare copy number variant analysis
 
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Association test using copy number profile curves (CONCUR) enhances power in rare copy number variant analysis

Journal
PLoS Computational Biology
Journal Volume
16
Journal Issue
5
Date Issued
2020
Author(s)
Brucker A.
Lu W.
West R.M.
Yu Q.-Y.
CHUHSING KATE HSIAO  
Hsiao T.-H.
Lin C.-H.
Magnusson P.K.E.
Sullivan P.F.
Szatkiewicz J.P.
TZU-PIN LU  
Tzeng J.-Y.
DOI
10.1371/journal.pcbi.1007797
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85084718940&doi=10.1371%2fjournal.pcbi.1007797&partnerID=40&md5=7a07cb253a28f97c6f48d8b4945ab6d9
https://scholars.lib.ntu.edu.tw/handle/123456789/520923
Abstract
Copy number variants (CNVs) are the gain or loss of DNA segments in the genome that can vary in dosage and length. CNVs comprise a large proportion of variation in human genomes and impact health conditions. To detect rare CNV associations, kernel-based methods have been shown to be a powerful tool due to their flexibility in modeling the aggregate CNV effects, their ability to capture effects from different CNV features, and their accommodation of effect heterogeneity. To perform a kernel association test, a CNV locus needs to be defined so that locus-specific effects can be retained during aggregation. However, CNV loci are arbitrarily defined and different locus definitions can lead to different performance depending on the underlying effect patterns. In this work, we develop a new kernel-based test called CONCUR (i.e., copy number profile curve-based association test) that is free from a definition of locus and evaluates CNV-phenotype associations by comparing individuals' copy number profiles across the genomic regions. CONCUR is built on the proposed concepts of "copy number profile curves" to describe the CNV profile of an individual, and the "common area under the curve (cAUC) kernel" to model the multi-feature CNV effects. The proposed method captures the effects of CNV dosage and length, accounts for the numerical nature of copy numbers, and accommodates between- and within-locus etiological heterogeneity without the need to define artificial CNV loci as required in current kernel methods. In a variety of simulation settings, CONCUR shows comparable or improved power over existing approaches. Real data analyses suggest that CONCUR is well powered to detect CNV effects in the Swedish Schizophrenia Study and the Taiwan Biobank.
SDGs

[SDGs]SDG3

Publisher
Public Library of Science
Type
journal article

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