Genomic and biological variation in bat IFNs: An antiviral treatment approach

Laith AL-Eitan, Ahmad Mihyar, Liguo Zhang, Punam Bisht, Rudolf Jaenisch

Research output: Contribution to journalReview articlepeer-review

3 Scopus citations

Abstract

Bat-borne viruses have attracted considerable research, especially in relation to the Covid-19 pandemic. Although bats can carry multiple zoonotic viruses that are lethal to many mammalian species, they appear to be asymptomatic to viral infection despite the high viral loads contained in their bodies. There are several differences between bats and other mammals. One of the major differences between bats and other mammals is the bats' ability to fly, which is believed to have induced evolutionary changes. It may have also favoured them as suitable hosts for viruses. This is related to their tolerance to viral infection. Innate immunity is the first line of defence against viral infection, but bats have metamorphosed the type of responses induced by innate immunity factors such as interferons. The expression patterns of interferons differ, as do those of interferon-related genes such as interferon regulatory factors and interferon-stimulated genes that contribute to the antiviral response of infected cells. In addition, the signalling pathways related to viral infection and immune responses have been subject to evolutionary changes, including mutations compared to their homologues in other mammals and gene selection. This article discusses the differences in the interferon-mediated antiviral response in bats compared to that of other mammals and how these differences are correlated to viral tolerance in bats. The effect of bat interferons related genes on human antiviral response against bat-borne viruses is also discussed.

Original languageEnglish
Article numbere2488
JournalReviews in Medical Virology
Volume34
Issue number1
DOIs
StatePublished - Jan 2024
Externally publishedYes

Bibliographical note

Publisher Copyright:
© 2023 John Wiley & Sons Ltd.

Funding

The authors extend their gratitude to Prof. Ronald B Corley for suggestions/resources. The authors would like to thank Jordan University of Science and Technology (JUST) and Massachusetts Institute of Technology (MIT) for providing logistical and technical support to this study. Professor AL-Eitan is a Fulbright scholar at Whitehead Institute for biomedical research, MIT. All figures have been created using Biorender.com.

FundersFunder number
Massachusetts Institute of Technology
Jordan University of Science and Technology

    Keywords

    • IFNs
    • antiviral treatment
    • bats
    • genomics
    • variation

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