Literature DB >> 19584899

Gene and pathway-based second-wave analysis of genome-wide association studies.

Gang Peng1, Li Luo, Hoicheong Siu, Yun Zhu, Pengfei Hu, Shengjun Hong, Jinying Zhao, Xiaodong Zhou, John D Reveille, Li Jin, Christopher I Amos, Momiao Xiong.   

Abstract

Despite the great success of genome-wide association studies (GWAS) in identification of the common genetic variants associated with complex diseases, the current GWAS have focused on single-SNP analysis. However, single-SNP analysis often identifies only a few of the most significant SNPs that account for a small proportion of the genetic variants and offers only a limited understanding of complex diseases. To overcome these limitations, we propose gene and pathway-based association analysis as a new paradigm for GWAS. As a proof of concept, we performed a comprehensive gene and pathway-based association analysis of 13 published GWAS. Our results showed that the proposed new paradigm for GWAS not only identified the genes that include significant SNPs found by single-SNP analysis, but also detected new genes in which each single SNP conferred a small disease risk; however, their joint actions were implicated in the development of diseases. The results also showed that the new paradigm for GWAS was able to identify biologically meaningful pathways associated with the diseases, which were confirmed by a gene-set-rich analysis using gene expression data.

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Year:  2010        PMID: 19584899      PMCID: PMC2987176          DOI: 10.1038/ejhg.2009.115

Source DB:  PubMed          Journal:  Eur J Hum Genet        ISSN: 1018-4813            Impact factor:   4.246


  27 in total

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3.  Genetic variants in FTO associated with metabolic syndrome: a meta- and gene-based analysis.

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5.  Smoothed functional principal component analysis for testing association of the entire allelic spectrum of genetic variation.

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Review 9.  Analysing biological pathways in genome-wide association studies.

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10.  ancGWAS: a post genome-wide association study method for interaction, pathway and ancestry analysis in homogeneous and admixed populations.

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