BTN3A3 evasion promotes the zoonotic potential of influenza A viruses.

Rute Maria Pinto1,2 Siddharth Bakshi1 Spyros Lytras1 Mohammad Khalid Zakaria1 Simon Swingler1 Julie C Worrell3 Vanessa Herder1 Kerrie E Hargrave3 Margus Varjak1,4 Natalia Cameron-Ruiz1 Mila Collados Rodriguez1 Mariana Varela1 Arthur Wickenhagen1 Colin Loney1 Yanlong Pei5 Joseph Hughes1 Elise Valette1 Matthew L Turnbull1 Wilhelm Furnon1 Quan Gu1 Lauren Orr1 Aislynn Taggart1 Ola Diebold2 Chris Davis1 Chris Boutell1 Finn Grey2 Edward Hutchinson1 Paul Digard2 Isabella Monne6 Sarah K Wootton5 Megan K L MacLeod3 Sam J Wilson1 Massimo Palmarini7
Affiliations 7 institutions
  1. MRC-University of Glasgow Centre for Virus Research, Glasgow, UK.
  2. The Roslin Institute, University of Edinburgh, Edinburgh, UK.
  3. School of Infection and Immunity, University of Glasgow, Glasgow, UK.
  4. Faculty of Science and Technology, Institute of Technology, University of Tartu, Tartu, Estonia.
  5. Department of Pathobiology, University of Guelph, Guelph, Ontario, Canada.
  6. Istituto Zooprofilattico Sperimentale delle Venezie (IZSVe), Legnaro, Italy.
  7. MRC-University of Glasgow Centre for Virus Research, Glasgow, UK. [email protected].

Abstract

Spillover events of avian influenza A viruses (IAVs) to humans could represent the first step in a future pandemic1. Several factors that limit the transmission and replication of avian IAVs in mammals have been identified. There are several gaps in our understanding to predict which virus lineages are more likely to cross the species barrier and cause disease in humans1. Here, we identified human BTN3A3 (butyrophilin subfamily 3 member A3)2 as a potent inhibitor of avian IAVs but not human IAVs. We determined that BTN3A3 is expressed in human airways and its antiviral activity evolved in primates. We show that BTN3A3 restriction acts primarily at the early stages of the virus life cycle by inhibiting avian IAV RNA replication. We identified residue 313 in the viral nucleoprotein (NP) as the genetic determinant of BTN3A3 sensitivity (313F or, rarely, 313L in avian viruses) or evasion (313Y or 313V in human viruses). However, avian IAV serotypes, such as H7 and H9, that spilled over into humans also evade BTN3A3 restriction. In these cases, BTN3A3 evasion is due to substitutions (N, H or Q) in NP residue 52 that is adjacent to residue 313 in the NP structure3. Thus, sensitivity or resistance to BTN3A3 is another factor to consider in the risk assessment of the zoonotic potential of avian influenza viruses.

Supporting text Virus Host Location
Birds 212 Host Microbial Interactions 10 Influenza A virus 186 Influenza in Birds 341 Influenza, Human 286 Viral Zoonoses 65 Animals 1948 Humans 1440 Nuclear Proteins 6 Nucleocapsid Proteins 15 Primates 28 Respiratory System 21 Risk Assessment 13 Transcription Factors 2 Virus Replication 191 NP protein, Influenza A virus 7 transcription factor BTF3 1

Evidence records

4 total
Functional Mechanism
4 records · 1 evidence types
Evidence type
4 records
OVE7134
Key finding

Residue 313 in the influenza A virus nucleoprotein determines sensitivity or evasion of BTN3A3 restriction, defining molecular adaptation between avian and human viruses.

Virus
Host
Not specified
Location
Not specified
Supporting text

We identified residue 313 in the viral nucleoprotein (NP) as the genetic determinant of BTN3A3 sensitivity (313F or, rarely, 313L in avian viruses) or evasion (313Y or 313V in human viruses).

Genes or proteins
nucleoprotein | BTN3A3
Host factors
BTN3A3
Mutations
313F | 313L | 313Y | 313V
Mechanism types
replication adaptation | host-range expansion
OVE7136
Key finding

Avian influenza A virus serotype H7 spilled over from birds into humans and was able to evade BTN3A3 restriction.

Virus
Host
Location
Not specified
Supporting text

However, avian IAV serotypes, such as H7 and H9, that spilled over into humans also evade BTN3A3 restriction.

Mechanism types
host adaptation | adaptive mutation
OVE7137
Key finding

Avian influenza A virus serotype H9 spilled over from birds into humans and was able to evade BTN3A3 restriction.

Virus
Host
Location
Not specified
Supporting text

However, avian IAV serotypes, such as H7 and H9, that spilled over into humans also evade BTN3A3 restriction.

Mechanism types
host adaptation | adaptive mutation
OVE7135
Key finding

Substitutions at NP residue 52 adjacent to residue 313 enable BTN3A3 evasion in avian H7 and H9 influenza viruses infecting humans.

Virus
Host
Not specified
Location
Not specified
Supporting text

In these cases, BTN3A3 evasion is due to substitutions (N, H or Q) in NP residue 52 that is adjacent to residue 313 in the NP structure.

Genes or proteins
nucleoprotein | BTN3A3
Host factors
BTN3A3
Mutations
52N | 52H | 52Q
Mechanism types
replication adaptation | host-range expansion