Transfer learning enables prediction of CYP2D6 haplotype function

Author:

McInnes GregoryORCID,Dalton RachelORCID,Sangkuhl KatrinORCID,Whirl-Carrillo Michelle,Lee Seung-beenORCID,Tsao Philip S.ORCID,Gaedigk AndreaORCID,Altman Russ B.ORCID,Woodahl Erica L.ORCID

Abstract

Cytochrome P450 2D6 (CYP2D6) is a highly polymorphic gene whose protein product metabolizes more than 20% of clinically used drugs. Genetic variations in CYP2D6 are responsible for interindividual heterogeneity in drug response that can lead to drug toxicity and ineffective treatment, making CYP2D6 one of the most important pharmacogenes. Prediction of CYP2D6 phenotype relies on curation of literature-derived functional studies to assign a functional status to CYP2D6 haplotypes. As the number of large-scale sequencing efforts grows, new haplotypes continue to be discovered, and assignment of function is challenging to maintain. To address this challenge, we have trained a convolutional neural network to predict functional status of CYP2D6 haplotypes, called Hubble.2D6. Hubble.2D6 predicts haplotype function from sequence data and was trained using two pre-training steps with a combination of real and simulated data. We find that Hubble.2D6 predicts CYP2D6 haplotype functional status with 88% accuracy in a held-out test set and explains 47.5% of the variance in in vitro functional data among star alleles with unknown function. Hubble.2D6 may be a useful tool for assigning function to haplotypes with uncurated function, and used for screening individuals who are at risk of being poor metabolizers.

Funder

National Institutes of Health

Northwest alaska-pharmacogenomics research network

Northwest Alaska-Pharmacogenomics Research Network

National Institute of General Medical Sciences

Chan Zuckerberg Biohub

National Heart, Lung, and Blood Institute

Publisher

Public Library of Science (PLoS)

Subject

Computational Theory and Mathematics,Cellular and Molecular Neuroscience,Genetics,Molecular Biology,Ecology,Modeling and Simulation,Ecology, Evolution, Behavior and Systematics

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