Logo Lanfrica
  • Home
  • Atlas
  • Insights
  • Docs
  • Sign in

© 2026 Lanfrica. All rights reserved. All copyrights of the resources shown on the Lanfrica website belong to the original copyright holders, unless explicitly stated otherwise.

Dual Host-Virus Arms Races Shape an Essential Housekeeping Protein

Domain:

healthcare

Record type:

paper
Creator:
AnnJonHyeMic
Host:avatar

Transferrin Receptor (TfR1) is the cell-surface receptor that regulates iron uptake into cells, a process that is fundamental to life. However, TfR1 also facilitates the cellular entry of multiple mammalian viruses. We use evolutionary and functional analyses of TfR1 in the rodent clade, where two families of viruses bind this receptor, to mechanistically dissect how essential housekeeping genes like TFR1 successfully balance the opposing selective pressures exerted by host and virus. We find that while the sequence of rodent TfR1 is generally conserved, a small set of TfR1 residue positions has evolved rapidly over the speciation of rodents. Remarkably, all of these residues correspond to the two virus binding surfaces of TfR1. We show that naturally occurring mutations at these positions block virus entry while simultaneously preserving iron-uptake functionalities, both in rodent and human TfR1. Thus, by constantly replacing the amino acids encoded at just a few residue positions, TFR1 divorces adaptation to ever-changing viruses from preservation of key cellular functions. These dynamics have driven genetic divergence at the TFR1 locus that now enforces species-specific barriers to virus transmission, limiting both the cross-species and zoonotic transmission of these viruses.

Visit

figshare.com

Tags

Biological SciencesEvolutionary biologyEvolutionary geneticsgeneticsMolecular geneticsmicrobiologyVirologyEmerging viral diseasesHost-pathogen interactionhost-virus+3

Licenses

CC BY 4.0

Similar

African swine fever virus-like integrated elements in a soft tick genome – an ancient virus vector arms race?Genetic architecture facilitates then constrains adaptation in a host-parasite coevolutionary arms race.Host serum protein biomarkers of tuberculosis in sub-Saharan AfricaA 160‐kDa Protein Is Essential for Hemocyanin‐derived Melanosis of PrawnData_Sheet_1_Evaluation of Host Serum Protein Biomarkers of Tuberculosis in sub-Saharan Africa.docxIntra-host quasispecies reconstructions resemble inter-host variability of transmitted chronic hepatitis B virus strains

African swine fever virus-like integrated elements in a soft tick genome – an ancient virus vector arms race?

Abstract Background African swine fever vi

Genetic architecture facilitates then constrains adaptation in a host-parasite coevolutionary arms race.

In coevolutionary arms races, interacting species impose selection on each other, generating recipro

Host serum protein biomarkers of tuberculosis in sub-Saharan Africa

Rapid, accurate, affordable, user-friendly and robust diagnostic tests are needed for use in sub-Sah

A 160‐kDa Protein Is Essential for Hemocyanin‐derived Melanosis of Prawn

ABSTRACT A purified 160‐kDa protein, isolated from the cuticle of kurama prawn

Data_Sheet_1_Evaluation of Host Serum Protein Biomarkers of Tuberculosis in sub-Saharan Africa.docx

Accurate and affordable point-of-care diagnostics for tuberculosis (TB) are needed. Host serum pr

Intra-host quasispecies reconstructions resemble inter-host variability of transmitted chronic hepatitis B virus strains

Preprint The hepatitis B virus is a partially double stranded DNA virus in the Hepadn