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Gene-Based Association Testing of Dichotomous Traits With Generalized Functional Linear Mixed Models Using Extended Pedigrees: Applications to Age-Related Macular Degeneration

Abstract

Genetics plays a role in age-related macular degeneration (AMD), a common cause of blindness in the elderly. There is a need for powerful methods for carrying out region-based association tests between a dichotomous trait like AMD and genetic variants on family data. Here, we apply our new generalized functional linear mixed models (GFLMM) developed to test for gene-based association in a set of AMD families. Using common and rare variants, we observe significant association with two known AMD genes: and . Using rare variants, we find suggestive signals in four genes: , , , and . Intriguingly, is down-regulated in AMD aqueous humor, and deficiency leads to retinal inflammation and increased vulnerability to oxidative stress. These findings were made possible by our GFLMM which model the effect of a major gene as a fixed mean, the polygenic contributions as a random variation, and the correlation of pedigree members by kinship coefficients. Simulations indicate that the GFLMM likelihood ratio tests (LRTs) accurately control the Type I error rates. The LRTs have similar or higher power than existing retrospective kernel and burden statistics. Our GFLMM-based statistics provide a new tool for conducting family-based genetic studies of complex diseases. Supplementary materials for this article, including a standardized description of the materials available for reproducing the work, are available as an online supplement.

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References
1.
Friedman D, OColmain B, Munoz B, Tomany S, McCarty C, de Jong P . Prevalence of age-related macular degeneration in the United States. Arch Ophthalmol. 2004; 122(4):564-72. DOI: 10.1001/archopht.122.4.564. View

2.
Fan R, Wang Y, Mills J, Wilson A, Bailey-Wilson J, Xiong M . Functional linear models for association analysis of quantitative traits. Genet Epidemiol. 2013; 37(7):726-42. PMC: 4163942. DOI: 10.1002/gepi.21757. View

3.
. The Age-Related Eye Disease Study (AREDS): design implications. AREDS report no. 1. Control Clin Trials. 1999; 20(6):573-600. PMC: 1473211. DOI: 10.1016/s0197-2456(99)00031-8. View

4.
Schaffner S, Foo C, Gabriel S, Reich D, Daly M, Altshuler D . Calibrating a coalescent simulation of human genome sequence variation. Genome Res. 2005; 15(11):1576-83. PMC: 1310645. DOI: 10.1101/gr.3709305. View

5.
Fan R, Wang Y, Yan Q, Ding Y, Weeks D, Lu Z . Gene-Based Association Analysis for Censored Traits Via Fixed Effect Functional Regressions. Genet Epidemiol. 2016; 40(2):133-43. PMC: 4724326. DOI: 10.1002/gepi.21947. View