Related Experiment Video
Updated: Oct 5, 2025

A Comparative Approach to Characterize the Landscape of Host-Pathogen Protein-Protein Interactions
Published on: July 18, 2013
Evolutionary Landscapes of Host-Virus Arms Races
Jeannette L Tenthorey1, Michael Emerman1,2, Harmit S Malik1,3
1Division of Basic Sciences, Fred Hutchinson Cancer Research Center, Seattle, Washington, USA; email: jtenthor@fredhutch.org, memerman@fredhutch.org, hsmalik@fredhutch.org.
Abstract:
Vertebrate immune systems suppress viral infection using both innate restriction factors and adaptive immunity. Viruses mutate to escape these defenses, driving hosts to counterevolve to regain fitness. This cycle recurs repeatedly, resulting in an evolutionary arms race whose outcome depends on the pace and likelihood of adaptation by host and viral genes. Although viruses evolve faster than their vertebrate hosts, their proteins are subject to numerous functional constraints that impact the probability of adaptation. These constraints are globally defined by evolutionary landscapes, which describe the fitness and adaptive potential of all possible mutations. We review deep mutational scanning experiments mapping the evolutionary landscapes of both host and viral proteins engaged in arms races. For restriction factors and some broadly neutralizing antibodies, landscapes favor the host, which may help to level the evolutionary playing field against rapidly evolving viruses. We discuss the biophysical underpinnings of these landscapes and their therapeutic implications.
More Related Videos
11:12Protocols for Investigating the Host-tissue Distribution, Transmission-mode, and Effect on the Host Fitness of a Densovirus in the Cotton Bollworm
Published on: April 12, 2017
06:02Arbovirus Infections As Screening Tools for the Identification of Viral Immunomodulators and Host Antiviral Factors
Published on: September 13, 2018
Related Concept Videos
Viral Mutations
Viral Recombination
Size and Structure of Viral Genomes
Retrovirus Life Cycles
Viruses of Archaea
Retroviruses