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Power of deep, all-exon resequencing for discovery of human trait genes.


ABSTRACT: The ability to sequence cost-effectively all of the coding regions of a given individual genome is rapidly approaching, with the potential for whole-genome resequencing not far behind. Initiatives are currently underway to phenotype hundreds of thousands of individuals for major human traits. Here, we determine the power for de novo discovery of genes related to human traits by resequencing all human exons in a clinical population. We analyze the potential of the gene discovery strategy that combines multiple rare variants from the same gene and treats genes, rather than individual alleles, as the units for the association test. By using computer simulations based on deep resequencing data for the European population, we show that genes meaningfully affecting a human trait can be identified in an unbiased fashion, although large sample sizes would be required to achieve substantial power.

SUBMITTER: Kryukov GV 

PROVIDER: S-EPMC2656172 | biostudies-literature | 2009 Mar

REPOSITORIES: biostudies-literature

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Power of deep, all-exon resequencing for discovery of human trait genes.

Kryukov Gregory V GV   Shpunt Alexander A   Stamatoyannopoulos John A JA   Sunyaev Shamil R SR  

Proceedings of the National Academy of Sciences of the United States of America 20090206 10


The ability to sequence cost-effectively all of the coding regions of a given individual genome is rapidly approaching, with the potential for whole-genome resequencing not far behind. Initiatives are currently underway to phenotype hundreds of thousands of individuals for major human traits. Here, we determine the power for de novo discovery of genes related to human traits by resequencing all human exons in a clinical population. We analyze the potential of the gene discovery strategy that com  ...[more]

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