Literature DB >> 25740221

Methods for association analysis and meta-analysis of rare variants in families.

Shuang Feng1, Giorgio Pistis, He Zhang, Matthew Zawistowski, Antonella Mulas, Magdalena Zoledziewska, Oddgeir L Holmen, Fabio Busonero, Serena Sanna, Kristian Hveem, Cristen Willer, Francesco Cucca, Dajiang J Liu, Gonçalo R Abecasis.   

Abstract

Advances in exome sequencing and the development of exome genotyping arrays are enabling explorations of association between rare coding variants and complex traits. To ensure power for these rare variant analyses, a variety of association tests that group variants by gene or functional unit have been proposed. Here, we extend these tests to family-based studies. We develop family-based burden tests, variable frequency threshold tests and sequence kernel association tests. Through simulations, we compare the performance of different tests. We describe situations where family-based studies provide greater power than studies of unrelated individuals to detect rare variants associated with moderate to large changes in trait values. Broadly speaking, we find that when sample sizes are limited and only a modest fraction of all trait-associated variants can be identified, family samples are more powerful. Finally, we illustrate our approach by analyzing the relationship between coding variants and levels of high-density lipoprotein (HDL) cholesterol in 11,556 individuals from the HUNT and SardiNIA studies, demonstrating association for coding variants in the APOC3, CETP, LIPC, LIPG, and LPL genes and illustrating the value of family samples, meta-analysis, and gene-level tests. Our methods are implemented in freely available C++ code.
© 2015 WILEY PERIODICALS, INC.

Entities:  

Keywords:  Rare variant; association; family sample; gene-level tests; meta-analysis; population sample; study design

Mesh:

Substances:

Year:  2015        PMID: 25740221      PMCID: PMC4459524          DOI: 10.1002/gepi.21892

Source DB:  PubMed          Journal:  Genet Epidemiol        ISSN: 0741-0395            Impact factor:   2.135


  48 in total

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