Conditional Inference in Cis-Mendelian Randomization Using Weak Genetic Factors

Author:

Patel Ashish1ORCID,Gill Dipender23,Newcombe Paul1,Burgess Stephen14

Affiliation:

1. MRC Biostatistics Unit, University of Cambridge , Cambridge , UK

2. Department of Epidemiology and Biostatistics, Imperial College London , London , UK

3. Chief Scientific Advisor Office, Research and Early Development , Novo Nordisk, Copenhagen , Denmark

4. Cardiovascular Epidemiology Unit, University of Cambridge , Cambridge , UK

Abstract

Abstract Mendelian randomization (MR) is a widely used method to estimate the causal effect of an exposure on an outcome by using genetic variants as instrumental variables. MR analyses that use variants from only a single genetic region (cis-MR) encoding the protein target of a drug are able to provide supporting evidence for drug target validation. This paper proposes methods for cis-MR inference that use many correlated variants to make robust inferences even in situations, where those variants have only weak effects on the exposure. In particular, we exploit the highly structured nature of genetic correlations in single gene regions to reduce the dimension of genetic variants using factor analysis. These genetic factors are then used as instrumental variables to construct tests for the causal effect of interest. Since these factors may often be weakly associated with the exposure, size distortions of standard t-tests can be severe. Therefore, we consider two approaches based on conditional testing. First, we extend results of commonly-used identification-robust tests for the setting where estimated factors are used as instruments. Second, we propose a test which appropriately adjusts for first-stage screening of genetic factors based on their relevance. Our empirical results provide genetic evidence to validate cholesterol-lowering drug targets aimed at preventing coronary heart disease.

Funder

Royal Society

British Heart Foundation

Medical Research Council

St George's University Hospitals NHS Foundation Trust

Wellcome 4i Program, Imperial College London

Publisher

Oxford University Press (OUP)

Subject

Applied Mathematics,General Agricultural and Biological Sciences,General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,Statistics and Probability

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