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Testing for an Unusual Distribution of Rare Variants

PLoS Genetics · 2011 · Vol. 7(3) · pp. e1001322–e1001322
Benjamin M. NealeManuel A. RivasBenjamin F. VoightDavid AltshulerBernie DevlinMarju Orho‐MelanderSekar KathiresanShaun PurcellKathryn RoederMark J. Daly

Abstract

Technological advances make it possible to use high-throughput sequencing as a primary discovery tool of medical genetics, specifically for assaying rare variation. Still this approach faces the analytic challenge that the influence of very rare variants can only be evaluated effectively as a group. A further complication is that any given rare variant could have no effect, could increase risk, or could be protective. We propose here the C-alpha test statistic as a novel approach for testing for the presence of this mixture of effects across a set of rare variants. Unlike existing burden tests, C-alpha, by testing the variance rather than the mean, maintains consistent power when the target set contains both risk and protective variants. Through simulations and analysis of case/control data, we demonstrate good power relative to existing methods that assess the burden of rare variants in individuals.

Genetic Associations and EpidemiologyGenomics and Rare DiseasesStatistical Methods in Clinical TrialsBiologyStatisticRare eventsSet (abstract data type)Computational biologyVariance (accounting)Variation (astronomy)StatisticsGeneticsComputer science

MeSH terms

AlgorithmsAnalysis of VarianceComputer SimulationData Interpretation, StatisticalHumansGenetic VariationModels, StatisticalHigh-Throughput Nucleotide Sequencing

Funding

  • Autism Speaks
  • Broad Institute
  • National Institutes of Health
  • National Institute of Mental Health
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References
Genomic Control for Association Studies
Biometrics · 1999 · 3,224 citations
Pooled Association Tests for Rare Variants in Exon-Resequencing Studies
The American Journal of Human Genetics · 2010 · 772 citations
Prediction of deleterious human alleles
Human Molecular Genetics · 2001 · 1,048 citations
Predicting Deleterious Amino Acid Substitutions
Genome Research · 2001 · 2,698 citations
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