William Gauderman, PhD

Professor of Population and Public Health Sciences

Division Chief of Biostatistics

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Overview

Dr. Gauderman’s research falls into two distinct areas:

1) developing statistical methods for genetic-epidemiologic analysis of pedigree data; 2) design and analysis of studies relating health outcomes to environmental exposures. In the field of genetic-epidemiology, he has developed models and methods of estimation for complex traits that depend on both genetic and environment causes, possibly interacting. He has evaluated a technique known as joint segregation and linkage analysis and has found it to be an efficient strategy both for detecting linkage and for estimating gene-environment interactions when the disease gene has not yet been identified. He has also compared various case-control designs for studying measured genes (e.g. candidate genes). In the field of environmental health, he works with the Children’s Health Study, a multi-community study of lung function and respiratory health in school-aged children in the Southern California area. The ultimate goal of this research is to determine whether air pollution, or particular components of air pollution such as ozone, is associated with reduced lung growth and increased incidence of asthma, bronchitis, and other respiratory illnesses. He is also the principal investigator of the biostatistics core of the NIEHS Center, and thus is available for statistical consultation for projects involving environmental health.

Research Funding

  • An integrative omics approach to investigate gene-environment interaction in colorectal cancer risk
    NIH · R01CA273198 · Jun 1, 2023 – May 31, 2028 · Role: Co-Principal Investigator
  • Using functional genomics to inform gene environment interactions for colorectal cancer
    NIH · R01CA201407 · Sep 23, 2016 – Aug 31, 2021 · Role: Co-Principal Investigator
  • Statistical Methods for Integrative Genomics in Cancer
    NIH · P01CA196569 · Jul 1, 2016 – Aug 31, 2027 · Role: Co-Principal Investigator
  • Gene-Environment Analyses of Early Life Exposures and Asthma in Ethnically Diverse Children
    NIH · R21ES024844 · Dec 1, 2014 – Nov 30, 2017 · Role: Co-Principal Investigator
  • Air pollution effects on asthma and lung function in Hispanic children
    NIH · R03ES022719 · Jun 20, 2013 – May 31, 2016 · Role: Principal Investigator
  • Detecting GxE Interactions in Genome-wide Association Studies
    NIH · R21HL115606 · Mar 1, 2012 – Feb 29, 2016 · Role: Principal Investigator
  • Software to compute sample size for high-volume genetic studies
    NIH · R41CA141852 · Aug 1, 2009 – Jul 31, 2012 · Role: Principal Investigator
  • Remote Sensing of Wildfire Smoke Exposures to Assess Health Effects
    NIH · R21ES016986 · Sep 5, 2008 – Aug 31, 2011 · Role: Co-Principal Investigator
  • A Genome-wide Association Study of Childhood Respiratory Outcomes
    NIH · R01HL087680 · May 20, 2007 – Apr 30, 2011 · Role: Principal Investigator
  • Environmental Genomics
    NIH · T32ES013678 · Apr 30, 2005 – Jun 30, 2025 · Role: Principal Investigator
  • STATISTICAL APPROACHES TO THE STUDY OF GXE INTERACTIONS
    NIH · R01ES010421 · May 1, 2000 – Apr 30, 2005 · Role: Principal Investigator
  • TRAINING MODULES FOR CLINICAL EPIDEMIOLOGICAL RESEARCH
    NIH · R43CA058240 · Sep 30, 1992 – May 31, 1993 · Role: Principal Investigator
  • PEDIGREE ANALYSIS USING GIBBS SAMPLING
    NIH · R43GM048326 · Sep 1, 1992 – Mar 31, 1993 · Role: Principal Investigator

Publications

  • Deciphering colorectal cancer genetics through multi-omic analysis of 100,204 cases and 154,587 controls of European and east Asian ancestries. Nat Genet. 2023 01; 55(1):89-99.. View in PubMed
  • Multi-omics insights into the biological mechanisms underlying statistical gene-by-lifestyle interactions with smoking and alcohol consumption. Front Genet. 2022; 13:954713.. View in PubMed
  • Differences in Self-Reported Food Allergy and Food-Associated Anaphylaxis by Race and Ethnicity Among SAPPHIRE Cohort Participants. J Allergy Clin Immunol Pract. 2023 04; 11(4):1123-1133.e11.. View in PubMed
  • Correction: Childhood traffic-related air pollution and adverse changes in subclinical atherosclerosis measures from childhood to adulthood. Environ Health. 2022 Nov 16; 21(1):110.. View in PubMed
  • Interactions between folate intake and genetic predictors of gene expression levels associated with colorectal cancer risk. Sci Rep. 2022 11 07; 12(1):18852.. View in PubMed
  • Transcriptomic Response to Calcium in Normal Colon Organoids is Impacted by Colon Location and Sex. Cancer Prev Res (Phila). 2022 10 04; 15(10):679-688.. View in PubMed
  • Genome-Wide Interaction Analysis of Genetic Variants With Menopausal Hormone Therapy for Colorectal Cancer Risk. J Natl Cancer Inst. 2022 08 08; 114(8):1135-1148.. View in PubMed
  • Beyond GWAS of Colorectal Cancer: Evidence of Interaction with Alcohol Consumption and Putative Causal Variant for the 10q24.2 Region. Cancer Epidemiol Biomarkers Prev. 2022 05 04; 31(5):1077-1089.. View in PubMed
  • A scalable hierarchical lasso for gene-environment interactions. J Comput Graph Stat. 2022; 31(4):1091-1103.. View in PubMed
  • Gene-lifestyle interactions in the genomics of human complex traits. Eur J Hum Genet. 2022 06; 30(6):730-739.. View in PubMed