Limits to detecting epistasis in the fitness landscape of HIV

Author:

Biswas AvikORCID,Haldane AllanORCID,Levy Ronald M.ORCID

Abstract

The rapid evolution of HIV is constrained by interactions between mutations which affect viral fitness. In this work, we explore the role of epistasis in determining the mutational fitness landscape of HIV for multiple drug target proteins, including Protease, Reverse Transcriptase, and Integrase. Epistatic interactions between residues modulate the mutation patterns involved in drug resistance, with unambiguous signatures of epistasis best seen in the comparison of the Potts model predicted and experimental HIV sequence “prevalences” expressed as higher-order marginals (beyond triplets) of the sequence probability distribution. In contrast, experimental measures of fitness such as viral replicative capacities generally probe fitness effects of point mutations in a single background, providing weak evidence for epistasis in viral systems. The detectable effects of epistasis are obscured by higher evolutionary conservation at sites. While double mutant cycles in principle, provide one of the best ways to probe epistatic interactions experimentally without reference to a particular background, we show that the analysis is complicated by the small dynamic range of measurements. Overall, we show that global pairwise interaction Potts models are necessary for predicting the mutational landscape of viral proteins.

Funder

National Institutes of Health

National Science Foundation

Publisher

Public Library of Science (PLoS)

Subject

Multidisciplinary

Reference67 articles.

1. Mutation effects predicted from sequence co-variation;TA Hopf;Nature biotechnology,2017

2. Variable fitness impact of HIV-1 escape mutations to cytotoxic T lymphocyte (CTL) response;RM Troyer;PLoS pathogens,2009

3. Fitness epistasis and constraints on adaptation in a human immunodeficiency virus type 1 protein region;J da Silva;Genetics,2010

4. A sensitive real-time PCR based assay to estimate the impact of amino acid substitutions on the competitive replication fitness of human immunodeficiency virus type 1 in cell culture;Y Liu;Journal of virological methods,2013

5. High-throughput profiling of point mutations across the HIV-1 genome;LQ Al-Mawsawi;Retrovirology,2014

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