Genetic drug target validation using Mendelian randomisation

Publication date

2020-06-26

Authors

Schmidt, Amand FORCID 0000-0003-1327-0424
Finan, Chris
Gordillo-Marañón, Maria
Asselbergs, Folkert WORCID 0000-0002-1692-8669ISNI 0000000391548591
Freitag, Daniel F
Patel, Riyaz S
Tyl, Benoît
Chopade, Sandesh
Faraway, Rupert
Zwierzyna, Magdalena

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Abstract

Mendelian randomisation (MR) analysis is an important tool to elucidate the causal relevance of environmental and biological risk factors for disease. However, causal inference is undermined if genetic variants used to instrument a risk factor also influence alternative disease-pathways (horizontal pleiotropy). Here we report how the 'no horizontal pleiotropy assumption' is strengthened when proteins are the risk factors of interest. Proteins are typically the proximal effectors of biological processes encoded in the genome. Moreover, proteins are the targets of most medicines, so MR studies of drug targets are becoming a fundamental tool in drug development. To enable such studies, we introduce a mathematical framework that contrasts MR analysis of proteins with that of risk factors located more distally in the causal chain from gene to disease. We illustrate key model decisions and introduce an analytical framework for maximising power and evaluating the robustness of analyses.

Keywords

Confidence Intervals, Coronary Disease/genetics, Drug Delivery Systems, Genes, Genome, Human, Humans, Linkage Disequilibrium/genetics, Lipids/chemistry, Mendelian Randomization Analysis, Models, Genetic, Odds Ratio, Phenomics, Polymorphism, Single Nucleotide/genetics, Proteins/genetics, Quantitative Trait Loci/genetics, Reproducibility of Results, General Physics and Astronomy, General Chemistry, General Biochemistry,Genetics and Molecular Biology, Research Support, Non-U.S. Gov't, Journal Article

Citation

Schmidt, A F, Finan, C, Gordillo-Marañón, M, Asselbergs, F W, Freitag, D F, Patel, R S, Tyl, B, Chopade, S, Faraway, R, Zwierzyna, M & Hingorani, A D 2020, 'Genetic drug target validation using Mendelian randomisation', Nature Communications, vol. 11, no. 1, 3255, pp. 1-12. https://doi.org/10.1038/s41467-020-16969-0