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Zoonotic avian influenza viruses evade human BTN3A3 restriction

View ORCID ProfileRute Maria Pinto, View ORCID ProfileSiddharth Bakshi, View ORCID ProfileSpyros Lytras, View ORCID ProfileMohammad Khalid Zakaria, View ORCID ProfileSimon Swingler, View ORCID ProfileJulie C Worrell, View ORCID ProfileVanessa Herder, View ORCID ProfileMargus Varjak, View ORCID ProfileNatalia Cameron-Ruiz, View ORCID ProfileMila Collados Rodriguez, Mariana Varela, View ORCID ProfileArthur Wickenhagen, View ORCID ProfileColin Loney, Yanlong Pei, View ORCID ProfileJoseph Hughes, Elise Valette, View ORCID ProfileMatthew L Turnbull, View ORCID ProfileWilhelm Furnon, View ORCID ProfileKerrie E Hargrave, View ORCID ProfileQuan Gu, Lauren Orr, View ORCID ProfileAislynn Taggart, View ORCID ProfileChris Boutell, View ORCID ProfileFinn Grey, View ORCID ProfileEdward Hutchinson, View ORCID ProfilePaul Digard, View ORCID ProfileIsabella Monne, View ORCID ProfileSarah K Wootton, View ORCID ProfileMegan K L MacLeod, View ORCID ProfileSam J Wilson, View ORCID ProfileMassimo Palmarini
doi: https://doi.org/10.1101/2022.06.14.496196
Rute Maria Pinto
1MRC–University of Glasgow Centre for Virus Research (CVR), Glasgow, UK
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Siddharth Bakshi
1MRC–University of Glasgow Centre for Virus Research (CVR), Glasgow, UK
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Spyros Lytras
1MRC–University of Glasgow Centre for Virus Research (CVR), Glasgow, UK
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Mohammad Khalid Zakaria
1MRC–University of Glasgow Centre for Virus Research (CVR), Glasgow, UK
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Simon Swingler
1MRC–University of Glasgow Centre for Virus Research (CVR), Glasgow, UK
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Julie C Worrell
2Institute of Infection, Immunity and Inflammation, University of Glasgow, UK
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Vanessa Herder
1MRC–University of Glasgow Centre for Virus Research (CVR), Glasgow, UK
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Margus Varjak
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Natalia Cameron-Ruiz
1MRC–University of Glasgow Centre for Virus Research (CVR), Glasgow, UK
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Mila Collados Rodriguez
1MRC–University of Glasgow Centre for Virus Research (CVR), Glasgow, UK
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Mariana Varela
1MRC–University of Glasgow Centre for Virus Research (CVR), Glasgow, UK
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Arthur Wickenhagen
1MRC–University of Glasgow Centre for Virus Research (CVR), Glasgow, UK
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Colin Loney
1MRC–University of Glasgow Centre for Virus Research (CVR), Glasgow, UK
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Yanlong Pei
3Department of Pathobiology, University of Guelph, Guelph, Ontario, Canada
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Joseph Hughes
1MRC–University of Glasgow Centre for Virus Research (CVR), Glasgow, UK
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Elise Valette
1MRC–University of Glasgow Centre for Virus Research (CVR), Glasgow, UK
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Matthew L Turnbull
1MRC–University of Glasgow Centre for Virus Research (CVR), Glasgow, UK
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Wilhelm Furnon
1MRC–University of Glasgow Centre for Virus Research (CVR), Glasgow, UK
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Kerrie E Hargrave
2Institute of Infection, Immunity and Inflammation, University of Glasgow, UK
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Quan Gu
1MRC–University of Glasgow Centre for Virus Research (CVR), Glasgow, UK
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Lauren Orr
1MRC–University of Glasgow Centre for Virus Research (CVR), Glasgow, UK
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Aislynn Taggart
1MRC–University of Glasgow Centre for Virus Research (CVR), Glasgow, UK
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Chris Boutell
1MRC–University of Glasgow Centre for Virus Research (CVR), Glasgow, UK
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Finn Grey
5Roslin Institute, University of Edinburgh, Edinburgh, UK
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Edward Hutchinson
1MRC–University of Glasgow Centre for Virus Research (CVR), Glasgow, UK
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Paul Digard
5Roslin Institute, University of Edinburgh, Edinburgh, UK
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Isabella Monne
4Istituto Zooprofilattico Sperimentale delle Venezie (IZSVe), Legnaro, Italy
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Sarah K Wootton
3Department of Pathobiology, University of Guelph, Guelph, Ontario, Canada
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Megan K L MacLeod
2Institute of Infection, Immunity and Inflammation, University of Glasgow, UK
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Sam J Wilson
1MRC–University of Glasgow Centre for Virus Research (CVR), Glasgow, UK
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Massimo Palmarini
1MRC–University of Glasgow Centre for Virus Research (CVR), Glasgow, UK
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  • ORCID record for Massimo Palmarini
  • For correspondence: massimo.palmarini@glasgow.ac.uk
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Abstract

Cross-species transmission of avian influenza A viruses (IAVs) into humans could represent the first step of a future pandemic1. Multiple factors limiting the spillover and adaptation of avian IAVs in humans have been identified, but they are not sufficient to explain which virus lineages are more likely to cross the species barrier1,2. Here, we identified human BTN3A33 (butyrophilin subfamily 3 member A3) as a potent inhibitor of avian but not human IAVs. We determined that BTN3A3 is constitutively expressed in human airways and its antiviral activity evolved in primates. We show that BTN3A3 restriction acts at the early stages of virus replication by inhibiting avian IAV vRNA transcription. 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, several serotypes of avian IAVs that spilled over into humans in recent decades 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 structure4. Importantly, we identified more than 150 avian IAV lineages with a BTN3A3-resistant genotype. In conclusion, sensitivity or resistance to BTN3A3 is another factor to consider in the risk assessment of the zoonotic potential of avian influenza viruses.

Competing Interest Statement

The authors have declared no competing interest.

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Zoonotic avian influenza viruses evade human BTN3A3 restriction
Rute Maria Pinto, Siddharth Bakshi, Spyros Lytras, Mohammad Khalid Zakaria, Simon Swingler, Julie C Worrell, Vanessa Herder, Margus Varjak, Natalia Cameron-Ruiz, Mila Collados Rodriguez, Mariana Varela, Arthur Wickenhagen, Colin Loney, Yanlong Pei, Joseph Hughes, Elise Valette, Matthew L Turnbull, Wilhelm Furnon, Kerrie E Hargrave, Quan Gu, Lauren Orr, Aislynn Taggart, Chris Boutell, Finn Grey, Edward Hutchinson, Paul Digard, Isabella Monne, Sarah K Wootton, Megan K L MacLeod, Sam J Wilson, Massimo Palmarini
bioRxiv 2022.06.14.496196; doi: https://doi.org/10.1101/2022.06.14.496196
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Zoonotic avian influenza viruses evade human BTN3A3 restriction
Rute Maria Pinto, Siddharth Bakshi, Spyros Lytras, Mohammad Khalid Zakaria, Simon Swingler, Julie C Worrell, Vanessa Herder, Margus Varjak, Natalia Cameron-Ruiz, Mila Collados Rodriguez, Mariana Varela, Arthur Wickenhagen, Colin Loney, Yanlong Pei, Joseph Hughes, Elise Valette, Matthew L Turnbull, Wilhelm Furnon, Kerrie E Hargrave, Quan Gu, Lauren Orr, Aislynn Taggart, Chris Boutell, Finn Grey, Edward Hutchinson, Paul Digard, Isabella Monne, Sarah K Wootton, Megan K L MacLeod, Sam J Wilson, Massimo Palmarini
bioRxiv 2022.06.14.496196; doi: https://doi.org/10.1101/2022.06.14.496196

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