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A unique feature of swine ANP32A provides susceptibility to avian influenza virus infection in pigs

Identifieur interne : 000018 ( Main/Exploration ); précédent : 000017; suivant : 000019

A unique feature of swine ANP32A provides susceptibility to avian influenza virus infection in pigs

Auteurs : Haili Zhang [République populaire de Chine] ; Hongxin Li [République populaire de Chine] ; Wenqiang Wang [République populaire de Chine] ; Yujie Wang [République populaire de Chine] ; Guan-Zhu Han [République populaire de Chine] ; Hualan Chen [République populaire de Chine] ; Xiaojun Wang [République populaire de Chine]

Source :

RBID : PMC:7055917

Abstract

Both the replication and transcription of the influenza virus are catalyzed by the viral polymerase complex. The polymerases of most avian influenza A viruses have poor performance in mammalian cells, which is considered to be one of the important species barriers. Pigs have been long considered as important intermediate hosts for interspecies transmission of the avian influenza virus, because of their susceptibility to infection with both avian and mammalian influenza viruses. However, the molecular basis of influenza polymerase adaptation in pigs remains largely unknown. ANP32A and ANP32B proteins have been identified as playing fundamental roles in influenza virus replication and host range determination. In this study, we found that swine ANP32A (swANP32A), unlike swine ANP32B or other mammalian ANP32A or B, shows stronger supporting activity to avian viral polymerase. Knockout of ANP32A in pig cells PK15 dramatically reduced avian influenza polymerase activity and viral infectivity, suggesting a unique feature of swANP32A in supporting avian influenza viral polymerase. This species-specific activity is mapped to two key sites, 106V and 156S, in swANP32A. Interestingly, the amino acid 106V is unique to pigs among all the vertebrate species studied, and when combined with 156S, exhibits positive epistasis in pigs. Mutation of 106V and 156S to the signature found in ANP32As from other mammalian species weakened the interaction between swANP32A and chicken viral polymerase, and reduced polymerase activity. Understanding the molecular basis of ANP32 proteins may help to discover new antiviral targets and design avian influenza resistant genome edited pigs.


Url:
DOI: 10.1371/journal.ppat.1008330
PubMed: 32084248
PubMed Central: 7055917


Affiliations:


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<p>Both the replication and transcription of the influenza virus are catalyzed by the viral polymerase complex. The polymerases of most avian influenza A viruses have poor performance in mammalian cells, which is considered to be one of the important species barriers. Pigs have been long considered as important intermediate hosts for interspecies transmission of the avian influenza virus, because of their susceptibility to infection with both avian and mammalian influenza viruses. However, the molecular basis of influenza polymerase adaptation in pigs remains largely unknown. ANP32A and ANP32B proteins have been identified as playing fundamental roles in influenza virus replication and host range determination. In this study, we found that swine ANP32A (swANP32A), unlike swine ANP32B or other mammalian ANP32A or B, shows stronger supporting activity to avian viral polymerase. Knockout of ANP32A in pig cells PK15 dramatically reduced avian influenza polymerase activity and viral infectivity, suggesting a unique feature of swANP32A in supporting avian influenza viral polymerase. This species-specific activity is mapped to two key sites, 106V and 156S, in swANP32A. Interestingly, the amino acid 106V is unique to pigs among all the vertebrate species studied, and when combined with 156S, exhibits positive epistasis in pigs. Mutation of 106V and 156S to the signature found in ANP32As from other mammalian species weakened the interaction between swANP32A and chicken viral polymerase, and reduced polymerase activity. Understanding the molecular basis of ANP32 proteins may help to discover new antiviral targets and design avian influenza resistant genome edited pigs.</p>
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<name sortKey="Zhang, Haili" sort="Zhang, Haili" uniqKey="Zhang H" first="Haili" last="Zhang">Haili Zhang</name>
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<name sortKey="Chen, Hualan" sort="Chen, Hualan" uniqKey="Chen H" first="Hualan" last="Chen">Hualan Chen</name>
<name sortKey="Han, Guan Zhu" sort="Han, Guan Zhu" uniqKey="Han G" first="Guan-Zhu" last="Han">Guan-Zhu Han</name>
<name sortKey="Li, Hongxin" sort="Li, Hongxin" uniqKey="Li H" first="Hongxin" last="Li">Hongxin Li</name>
<name sortKey="Wang, Wenqiang" sort="Wang, Wenqiang" uniqKey="Wang W" first="Wenqiang" last="Wang">Wenqiang Wang</name>
<name sortKey="Wang, Xiaojun" sort="Wang, Xiaojun" uniqKey="Wang X" first="Xiaojun" last="Wang">Xiaojun Wang</name>
<name sortKey="Wang, Yujie" sort="Wang, Yujie" uniqKey="Wang Y" first="Yujie" last="Wang">Yujie Wang</name>
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</record>

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