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Membrane interactions and uncoating of Aichi virus, a picornavirus that lacks a VP4

View ORCID ProfileJames T. Kelly, Jessica Swanson, Joseph Newman, View ORCID ProfileElisabetta Groppelli, View ORCID ProfileNicola J. Stonehouse, Tobias J. Tuthill
doi: https://doi.org/10.1101/2022.01.10.475380
James T. Kelly
aThe Pirbright Institute, Ash Road, Pirbright, GU24 0NF, UK
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Jessica Swanson
aThe Pirbright Institute, Ash Road, Pirbright, GU24 0NF, UK
bSchool of Molecular and Cellular Biology, Faculty of Biological Sciences and Astbury Centre for Structural Molecular Biology, University of Leeds, Leeds, LS2 9JT, UK
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Joseph Newman
aThe Pirbright Institute, Ash Road, Pirbright, GU24 0NF, UK
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Elisabetta Groppelli
cInstitute for Infection and Immunity, St. George’s University of London, Tooting, London, SW17 0RE, UK
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  • ORCID record for Elisabetta Groppelli
Nicola J. Stonehouse
bSchool of Molecular and Cellular Biology, Faculty of Biological Sciences and Astbury Centre for Structural Molecular Biology, University of Leeds, Leeds, LS2 9JT, UK
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Tobias J. Tuthill
aThe Pirbright Institute, Ash Road, Pirbright, GU24 0NF, UK
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  • For correspondence: toby.tuthill@pirbright.ac.uk
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Abstract

Kobuviruses are an unusual and poorly characterised genus within the picornavirus family, and can cause gastrointestinal enteric disease in humans, livestock and pets. The human Kobuvirus, Aichi virus (AiV) can cause severe gastroenteritis and deaths in children below the age of five years, however this is a very rare occurrence. During the assembly of most picornaviruses (e.g. poliovirus, rhinovirus and foot-and-mouth disease virus), the capsid precursor protein VP0 is cleaved into VP4 and VP2. However, Kobuviruses retain an uncleaved VP0. From studies with other picornaviruses, it is known that VP4 performs the essential function of pore formation in membranes, which facilitates transfer of the viral genome across the endosomal membrane and into the cytoplasm for replication. Here, we employ genome exposure and membrane interaction assays to demonstrate that pH plays a critical role in AiV uncoating and membrane interactions. We demonstrate that incubation at low pH alters the exposure of hydrophobic residues within the capsid, enhances genome exposure and enhances permeabilisation of model membranes. Furthermore, using peptides we demonstrate that the N-terminus of VP0 mediates membrane pore formation in model membranes, indicating that this plays an analogous function to VP4.

Importance To initiate infection, viruses must enter a host cell and deliver their genome into the appropriate location. The picornavirus family of small non-enveloped RNA viruses includes significant human and animal pathogens and are also models to understand the process of cell entry. Most picornavirus capsids contain the internal protein VP4, generated from cleavage of a VP0 precursor. During entry, VP4 is released from the capsid. In enteroviruses this forms a membrane pore, which facilitates genome release into the cytoplasm. Due to high levels of sequence similarity, it is expected to play the same role for other picornaviruses. Some picornaviruses, such as Aichi virus, retain an intact VP0, and it is unknown how these viruses re-arrange their capsids and induce membrane permeability in the absence of VP4. Here we have used Aichi virus as a model VP0 virus to test for conservation of function between VP0 and VP4. This could enhance understanding of pore function and lead to development of novel therapeutic agents that block entry.

Competing Interest Statement

The authors have declared no competing interest.

Copyright 
The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. All rights reserved. No reuse allowed without permission.
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Posted January 10, 2022.
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Membrane interactions and uncoating of Aichi virus, a picornavirus that lacks a VP4
James T. Kelly, Jessica Swanson, Joseph Newman, Elisabetta Groppelli, Nicola J. Stonehouse, Tobias J. Tuthill
bioRxiv 2022.01.10.475380; doi: https://doi.org/10.1101/2022.01.10.475380
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Membrane interactions and uncoating of Aichi virus, a picornavirus that lacks a VP4
James T. Kelly, Jessica Swanson, Joseph Newman, Elisabetta Groppelli, Nicola J. Stonehouse, Tobias J. Tuthill
bioRxiv 2022.01.10.475380; doi: https://doi.org/10.1101/2022.01.10.475380

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