Challenges and opportunities in genome-wide environmental interaction (GWEI) studies

被引:0
|
作者
Hugues Aschard
Sharon Lutz
Bärbel Maus
Eric J. Duell
Tasha E. Fingerlin
Nilanjan Chatterjee
Peter Kraft
Kristel Van Steen
机构
[1] Harvard School of Public Health,Department of Epidemiology
[2] University of Colorado Anschutz Medical Campus,Departments of Epidemiology & Biostatistics and Informatics, Colorado School of Public Health
[3] University of Liège,Systems and Modeling Unit, Montefiore Institute
[4] University of Liège,Bioinformatics and Modeling, GIGA
[5] Catalan Institute of Oncology (ICO),R
[6] Bellvitge Biomedical Research Institute (IDIBELL),Unit of Nutrition, Environment and Cancer, Epidemiology Research Program
[7] National Cancer Institute,Division of Cancer Epidemiology and Genetics
[8] Harvard School of Public Health,Department of Biostatistics
来源
Human Genetics | 2012年 / 131卷
关键词
Random Forest; Environment Interaction; Environmental Exposure; Population Stratification; Multifactor Dimensionality Reduction;
D O I
暂无
中图分类号
学科分类号
摘要
The interest in performing gene–environment interaction studies has seen a significant increase with the increase of advanced molecular genetics techniques. Practically, it became possible to investigate the role of environmental factors in disease risk and hence to investigate their role as genetic effect modifiers. The understanding that genetics is important in the uptake and metabolism of toxic substances is an example of how genetic profiles can modify important environmental risk factors to disease. Several rationales exist to set up gene–environment interaction studies and the technical challenges related to these studies—when the number of environmental or genetic risk factors is relatively small—has been described before. In the post-genomic era, it is now possible to study thousands of genes and their interaction with the environment. This brings along a whole range of new challenges and opportunities. Despite a continuing effort in developing efficient methods and optimal bioinformatics infrastructures to deal with the available wealth of data, the challenge remains how to best present and analyze genome-wide environmental interaction (GWEI) studies involving multiple genetic and environmental factors. Since GWEIs are performed at the intersection of statistical genetics, bioinformatics and epidemiology, usually similar problems need to be dealt with as for genome-wide association gene–gene interaction studies. However, additional complexities need to be considered which are typical for large-scale epidemiological studies, but are also related to “joining” two heterogeneous types of data in explaining complex disease trait variation or for prediction purposes.
引用
收藏
页码:1591 / 1613
页数:22
相关论文
共 50 条
  • [31] Genome-Wide Interaction and Pathway Association Studies for Body Mass Index
    Jiao, Hongxiao
    Zang, Yong
    Zhang, Miaomiao
    Zhang, Yuan
    Wang, Yaogang
    Wang, Kai
    Prices, R. Arlen
    Li, Wei-Dong
    FRONTIERS IN GENETICS, 2019, 10
  • [32] Interaction analysis of SNPs discovered in genome-wide association studies (GWAS)
    Butter, F.
    Mann, M.
    NEW BIOTECHNOLOGY, 2010, 27 : S15 - S15
  • [33] Tuning Hyperparameters for Gene Interaction Models in Genome-Wide Association Studies
    Uppu, Suneetha
    Krishna, Aneesh
    NEURAL INFORMATION PROCESSING, ICONIP 2017, PT V, 2017, 10638 : 791 - 801
  • [34] Fast and general tests of genetic interaction for genome-wide association studies
    Franberg, Mattias
    Strawbridge, Rona J.
    Hamster, Anders
    de Faire, Ulf
    Lagergren, Jens
    Sennblad, Bengt
    PLOS COMPUTATIONAL BIOLOGY, 2017, 13 (06)
  • [35] The genetics of depression: successful genome-wide association studies introduce new challenges
    Ormel, Johan
    Hartman, Catharina A.
    Snieder, Harold
    TRANSLATIONAL PSYCHIATRY, 2019, 9 (1)
  • [36] Erratum: Genetics of osteoporosis from genome-wide association studies: advances and challenges
    J. Brent Richards
    Hou-Feng Zheng
    Tim D. Spector
    Nature Reviews Genetics, 2012, 13 : 672 - 672
  • [37] Gene-environment interactions, genome-wide studies, epigenetics: the new challenges
    Vineis, Paolo
    Baccarelli, Andrea
    EPIDEMIOLOGIA & PREVENZIONE, 2010, 34 (5-6): : 68 - 71
  • [38] The genetics of depression: successful genome-wide association studies introduce new challenges
    Johan Ormel
    Catharina A. Hartman
    Harold Snieder
    Translational Psychiatry, 9
  • [39] A decade of genome-wide association studies for coronary artery disease: the challenges ahead
    Erdmann, Jeanette
    Kessler, Thorsten
    Venegas, Loreto Munoz
    Schunkert, Heribert
    CARDIOVASCULAR RESEARCH, 2018, 114 (09) : 1241 - 1257
  • [40] Statistical challenges for genome-wide association studies of suicidality using family data
    Lasky-Su, J.
    Lange, C.
    EUROPEAN PSYCHIATRY, 2010, 25 (05) : 307 - 309