Genetic liability estimated from large-scale family data improves genetic prediction, risk score profiling, and gene mapping for major depression.

Am J Hum Genet

Institute of Biological Psychiatry, Mental Health Center - Sct Hans, Copenhagen University Hospital - Mental Health Services CPH, Copenhagen, Denmark; The Lundbeck Foundation Initiative for Integrative Psychiatric Research (iPSYCH), Copenhagen, Denmark; Section for Geogenetics, GLOBE Institute, Faculty of Health and Medical Science, Copenhagen University, Copenhagen, Denmark. Electronic address:

Published: November 2024

AI Article Synopsis

  • Large biobank samples allow researchers to combine detailed family histories and genetic data to investigate complex diseases.
  • The study introduces a new method called Pearson-Aitken Family Genetic Risk Scores (PA-FGRS) to estimate disease risk based on family medical histories.
  • Applying PA-FGRS to major depressive disorder (MDD) shows improved understanding of genetic factors and clinical variability, and enhances the effectiveness of genetic studies across different complex conditions.

Article Abstract

Large biobank samples provide an opportunity to integrate broad phenotyping, familial records, and molecular genetics data to study complex traits and diseases. We introduce Pearson-Aitken Family Genetic Risk Scores (PA-FGRS), a method for estimating disease liability from patterns of diagnoses in extended, age-censored genealogical records. We then apply the method to study a paradigmatic complex disorder, major depressive disorder (MDD), using the iPSYCH2015 case-cohort study of 30,949 MDD cases, 39,655 random population controls, and more than 2 million relatives. We show that combining PA-FGRS liabilities estimated from family records with molecular genotypes of probands improves three lines of inquiry. Incorporating PA-FGRS liabilities improves classification of MDD over and above polygenic scores, identifies robust genetic contributions to clinical heterogeneity in MDD associated with comorbidity, recurrence, and severity and can improve the power of genome-wide association studies. Our method is flexible and easy to use, and our study approaches are generalizable to other datasets and other complex traits and diseases.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11568754PMC
http://dx.doi.org/10.1016/j.ajhg.2024.09.009DOI Listing

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