Abstract
AbstractMotivationColocalization analysis is commonly used to assess whether two or more traits share the same genetic signals identified in genome-wide association studies (GWAS), and is important for prioritizing targets for functional follow-up of GWAS results. Existing colocalization methods can have suboptimal performance when there are multiple causal variants in one genomic locus.ResultsWe propose SharePro to extend the COLOC framework for colocalization analysis. Share-Pro integrates linkage disequilibrium (LD) modelling and colocalization assessment by grouping correlated variants into effect groups. With an efficient variational inference algorithm, posterior colocalization probabilities can be accurately estimated. In simulation studies, SharePro demonstrated increased power with a well-controlled false positive rate at a low computational cost. Through a challenging case of the colocalization analysis of the circulating abundance of R-spondin 3 (RSPO3) GWAS and estimated bone mineral density GWAS, we demonstrated the utility of SharePro in identifying biologically plausible colocalized signals.Availability and ImplementationThe SharePro software for colocalization analysis is openly available athttps://github.com/zhwm/SharePro_colocand the analysis conducted in this study is available athttps://github.com/zhwm/SharePro_coloc_analysis.
Publisher
Cold Spring Harbor Laboratory
Cited by
2 articles.
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