Avian Influenza A Virus polymerase can utilise human ANP32 proteins to support cRNA but not vRNA synthesis
File(s)mbio.03399-22.pdf (2.91 MB)
Published version
Author(s)
Swann, Olivia
Rasmussen, Amalie
Peacock, Thomas
Sheppard, Carol
Barclay, Wendy
Type
Journal Article
Abstract
Host restriction limits the emergence of novel pandemic strains from the influenza A virus avian reservoir. For efficient replication in mammalian cells, the avian influenza RNA-dependent RNA polymerase must adapt to use human orthologues of the host factor ANP32, which lack a 33-amino-acid insertion relative to avian ANP32A. Here, we find that influenza polymerase requires ANP32 proteins to support both steps of genome replication: cRNA and vRNA synthesis. However, avian strains are only restricted in vRNA synthesis in human cells. Therefore, avian influenza polymerase can use human ANP32 orthologues to support cRNA synthesis, without acquiring mammalian adaptations. This implies a fundamental difference in the mechanism by which ANP32 proteins support cRNA versus vRNA synthesis.
IMPORTANCE To infect humans and cause a pandemic, avian influenza must first adapt to use human versions of the proteins the virus hijacks for replication, instead of the avian orthologues found in bird cells. One critical host protein is ANP32. Understanding the details of how host proteins such as ANP32 support viral activity may allow the design of new antiviral strategies that disrupt these interactions. Here, we use cells that lack ANP32 to unambiguously demonstrate ANP32 is needed for both steps of influenza genome replication. Unexpectedly, however, we found that avian influenza can use human ANP32 proteins for the first step of replication, to copy a complementary strand, without adaptation but can only utilize avian ANP32 for the second step of replication that generates new genomes. This suggests ANP32 may have a distinct role in supporting the second step of replication, and it is this activity that is specifically blocked when avian influenza infects human cells.
IMPORTANCE To infect humans and cause a pandemic, avian influenza must first adapt to use human versions of the proteins the virus hijacks for replication, instead of the avian orthologues found in bird cells. One critical host protein is ANP32. Understanding the details of how host proteins such as ANP32 support viral activity may allow the design of new antiviral strategies that disrupt these interactions. Here, we use cells that lack ANP32 to unambiguously demonstrate ANP32 is needed for both steps of influenza genome replication. Unexpectedly, however, we found that avian influenza can use human ANP32 proteins for the first step of replication, to copy a complementary strand, without adaptation but can only utilize avian ANP32 for the second step of replication that generates new genomes. This suggests ANP32 may have a distinct role in supporting the second step of replication, and it is this activity that is specifically blocked when avian influenza infects human cells.
Date Issued
2023-02
Date Acceptance
2022-12-15
Citation
mBio, 2023, 14 (1), pp.1-14
ISSN
2150-7511
Publisher
American Society for Microbiology
Start Page
1
End Page
14
Journal / Book Title
mBio
Volume
14
Issue
1
Copyright Statement
Copyright © 2023 Swann et al. This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license.
License URL
Sponsor
Biotechnology and Biological Sciences Research Council (BBSRC)
Wellcome Trust
Identifier
https://journals.asm.org/doi/full/10.1128/mbio.03399-22?af=R
Grant Number
BB/R013071/1
205100/Z/16/Z
Subjects
Science & Technology
Life Sciences & Biomedicine
Microbiology
ANP32A
ANP32B
RNA polymerases
avian viruses
influenza
viral replication
virus-host interactions
zoonotic infections
RNA-POLYMERASE
INSIGHTS
REPLICATION
PLATFORM
IMAGE
ANP32A
ANP32B
RNA polymerases
avian viruses
influenza
viral replication
virus-host interactions
zoonotic infections
Animals
Humans
Influenza in Birds
Influenza, Human
RNA, Complementary
Cell Line
Influenza A virus
Virus Replication
RNA, Viral
Mammals
Nuclear Proteins
RNA-Binding Proteins
Cell Line
Animals
Mammals
Humans
Influenza A virus
RNA-Binding Proteins
Nuclear Proteins
RNA, Complementary
RNA, Viral
Virus Replication
Influenza, Human
Influenza in Birds
0605 Microbiology
Publication Status
Published
Date Publish Online
2023-01-16