Genetic Study of Complex Diseases in the Post-GWAS Era
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  • 英文篇名:Genetic Study of Complex Diseases in the Post-GWAS Era
  • 作者:Qingyang ; Huang
  • 英文作者:Qingyang Huang;College of Life Sciences,Central China Normal University;
  • 英文关键词:SNP;;Genome-wide association study;;Complex diseases;;Systems genetics;;Network biology
  • 中文刊名:YCXB
  • 英文刊名:遗传学报(英文版)
  • 机构:College of Life Sciences,Central China Normal University;
  • 出版日期:2015-03-20
  • 出版单位:Journal of Genetics and Genomics
  • 年:2015
  • 期:v.42
  • 基金:supported by the National Natural Science Foundation of China (Nos. 31371275 and 30971635);; the National Basic Research Program of China (973 Program) (No. 2011CB504004);; self-determined research funds of CCNU from the colleges’ basic research and operation of MOE (No. CCNU14Z01003)
  • 语种:英文;
  • 页:YCXB201503002
  • 页数:12
  • CN:03
  • ISSN:11-5450/R
  • 分类号:5-16
摘要
Genome-wide association studies(GWASs) have identified thousands of genes and genetic variants(mainly SNPs) that contribute to complex diseases in humans. Functional characterization and mechanistic elucidation of these SNPs and genes action are the next major challenge. It has been well established that SNPs altering the amino acids of protein-coding genes can drastically impact protein function,and play an important role in molecular pathogenesis. Functions of regulatory SNPs can be complex and elusive, and involve gene expression regulation through the effect on RNA splicing, transcription factor binding, DNA methylation and mi RNA recruitment. In the present review, we summarize the recent progress in our understanding of functional consequences of GWAS-associated non-coding regulatory SNPs, and discuss the application of systems genetics and network biology in the interpretation of GWAS findings.
        Genome-wide association studies(GWASs) have identified thousands of genes and genetic variants(mainly SNPs) that contribute to complex diseases in humans. Functional characterization and mechanistic elucidation of these SNPs and genes action are the next major challenge. It has been well established that SNPs altering the amino acids of protein-coding genes can drastically impact protein function,and play an important role in molecular pathogenesis. Functions of regulatory SNPs can be complex and elusive, and involve gene expression regulation through the effect on RNA splicing, transcription factor binding, DNA methylation and mi RNA recruitment. In the present review, we summarize the recent progress in our understanding of functional consequences of GWAS-associated non-coding regulatory SNPs, and discuss the application of systems genetics and network biology in the interpretation of GWAS findings.
引文
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