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An influenza HA stalk reactive polymeric IgA antibody exhibits anti-viral function regulated by binary interaction between HA and the antibody

IgA antibodies, which are secreted onto the mucosal surface as secretory IgA antibodies (SIgAs), play an important role in preventing influenza virus infection. A recent study reported that anti-hemagglutinin (HA) head-targeting antibodies increase anti-viral functions such as hemagglutination inhib...

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Autores principales: Sano, Kaori, Saito, Shinji, Suzuki, Tadaki, Kotani, Osamu, Ainai, Akira, van Riet, Elly, Tabata, Koshiro, Saito, Kumpei, Takahashi, Yoshimasa, Yokoyama, Masaru, Sato, Hironori, Maruno, Takahiro, Usami, Kaede, Uchiyama, Susumu, Ogawa-Goto, Kiyoko, Hasegawa, Hideki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7790537/
https://www.ncbi.nlm.nih.gov/pubmed/33412571
http://dx.doi.org/10.1371/journal.pone.0245244
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author Sano, Kaori
Saito, Shinji
Suzuki, Tadaki
Kotani, Osamu
Ainai, Akira
van Riet, Elly
Tabata, Koshiro
Saito, Kumpei
Takahashi, Yoshimasa
Yokoyama, Masaru
Sato, Hironori
Maruno, Takahiro
Usami, Kaede
Uchiyama, Susumu
Ogawa-Goto, Kiyoko
Hasegawa, Hideki
author_facet Sano, Kaori
Saito, Shinji
Suzuki, Tadaki
Kotani, Osamu
Ainai, Akira
van Riet, Elly
Tabata, Koshiro
Saito, Kumpei
Takahashi, Yoshimasa
Yokoyama, Masaru
Sato, Hironori
Maruno, Takahiro
Usami, Kaede
Uchiyama, Susumu
Ogawa-Goto, Kiyoko
Hasegawa, Hideki
author_sort Sano, Kaori
collection PubMed
description IgA antibodies, which are secreted onto the mucosal surface as secretory IgA antibodies (SIgAs), play an important role in preventing influenza virus infection. A recent study reported that anti-hemagglutinin (HA) head-targeting antibodies increase anti-viral functions such as hemagglutination inhibition (HI) and virus neutralization (NT), in addition to HA binding activity (reactivity) via IgA polymerization. However, the functional properties of anti-viral IgA antibodies with mechanisms of action distinct from those of anti-HA head-targeting antibodies remain elusive. Here, we characterized the functional properties of IgG, monomeric IgA, and polymeric IgA anti-HA stalk-binding clones F11 and FI6, and B12 (a low affinity anti-HA stalk clone), as well as Fab-deficient (ΔFab) IgA antibodies. We found that IgA polymerization impacts the functional properties of anti-HA stalk antibodies. Unlike anti-HA head antibodies, the anti-viral functions of anti-HA stalk antibodies were not simply enhanced by IgA polymerization. The data suggest that two modes of binding (Fab paratope-mediated binding to the HA stalk, and IgA Fc glycan-mediated binding to the HA receptor binding site (RBS)) occur during interaction between anti-stalk HA IgA antibodies and HA. In situations where Fab paratope-mediated binding to the HA stalk exceeded IgA Fc glycan-mediated binding to HA RBS, IgA polymerization increased anti-viral functions. By contrast, when IgA Fc glycan-mediated binding to the HA RBS was dominant, anti-viral activity will fall upon IgA polymerization. In summary, the results suggest that coordination between these two independent binding modules determines whether IgA polymerization has a negative or positive effect on the anti-viral functions of anti-HA stalk IgA antibodies.
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spelling pubmed-77905372021-01-27 An influenza HA stalk reactive polymeric IgA antibody exhibits anti-viral function regulated by binary interaction between HA and the antibody Sano, Kaori Saito, Shinji Suzuki, Tadaki Kotani, Osamu Ainai, Akira van Riet, Elly Tabata, Koshiro Saito, Kumpei Takahashi, Yoshimasa Yokoyama, Masaru Sato, Hironori Maruno, Takahiro Usami, Kaede Uchiyama, Susumu Ogawa-Goto, Kiyoko Hasegawa, Hideki PLoS One Research Article IgA antibodies, which are secreted onto the mucosal surface as secretory IgA antibodies (SIgAs), play an important role in preventing influenza virus infection. A recent study reported that anti-hemagglutinin (HA) head-targeting antibodies increase anti-viral functions such as hemagglutination inhibition (HI) and virus neutralization (NT), in addition to HA binding activity (reactivity) via IgA polymerization. However, the functional properties of anti-viral IgA antibodies with mechanisms of action distinct from those of anti-HA head-targeting antibodies remain elusive. Here, we characterized the functional properties of IgG, monomeric IgA, and polymeric IgA anti-HA stalk-binding clones F11 and FI6, and B12 (a low affinity anti-HA stalk clone), as well as Fab-deficient (ΔFab) IgA antibodies. We found that IgA polymerization impacts the functional properties of anti-HA stalk antibodies. Unlike anti-HA head antibodies, the anti-viral functions of anti-HA stalk antibodies were not simply enhanced by IgA polymerization. The data suggest that two modes of binding (Fab paratope-mediated binding to the HA stalk, and IgA Fc glycan-mediated binding to the HA receptor binding site (RBS)) occur during interaction between anti-stalk HA IgA antibodies and HA. In situations where Fab paratope-mediated binding to the HA stalk exceeded IgA Fc glycan-mediated binding to HA RBS, IgA polymerization increased anti-viral functions. By contrast, when IgA Fc glycan-mediated binding to the HA RBS was dominant, anti-viral activity will fall upon IgA polymerization. In summary, the results suggest that coordination between these two independent binding modules determines whether IgA polymerization has a negative or positive effect on the anti-viral functions of anti-HA stalk IgA antibodies. Public Library of Science 2021-01-07 /pmc/articles/PMC7790537/ /pubmed/33412571 http://dx.doi.org/10.1371/journal.pone.0245244 Text en © 2021 Sano et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Sano, Kaori
Saito, Shinji
Suzuki, Tadaki
Kotani, Osamu
Ainai, Akira
van Riet, Elly
Tabata, Koshiro
Saito, Kumpei
Takahashi, Yoshimasa
Yokoyama, Masaru
Sato, Hironori
Maruno, Takahiro
Usami, Kaede
Uchiyama, Susumu
Ogawa-Goto, Kiyoko
Hasegawa, Hideki
An influenza HA stalk reactive polymeric IgA antibody exhibits anti-viral function regulated by binary interaction between HA and the antibody
title An influenza HA stalk reactive polymeric IgA antibody exhibits anti-viral function regulated by binary interaction between HA and the antibody
title_full An influenza HA stalk reactive polymeric IgA antibody exhibits anti-viral function regulated by binary interaction between HA and the antibody
title_fullStr An influenza HA stalk reactive polymeric IgA antibody exhibits anti-viral function regulated by binary interaction between HA and the antibody
title_full_unstemmed An influenza HA stalk reactive polymeric IgA antibody exhibits anti-viral function regulated by binary interaction between HA and the antibody
title_short An influenza HA stalk reactive polymeric IgA antibody exhibits anti-viral function regulated by binary interaction between HA and the antibody
title_sort influenza ha stalk reactive polymeric iga antibody exhibits anti-viral function regulated by binary interaction between ha and the antibody
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7790537/
https://www.ncbi.nlm.nih.gov/pubmed/33412571
http://dx.doi.org/10.1371/journal.pone.0245244
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