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Revealing the Specificity of Human H1 Influenza A Viruses to Complex N-Glycans

[Image: see text] Influenza virus infection remains a threat to human health since viral hemagglutinins are constantly drifting, escaping infection and vaccine-induced antibody responses. Viral hemagglutinins from different viruses display variability in glycan recognition. In this context, recent H...

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Autores principales: Canales, Angeles, Sastre, Javier, Orduña, Jose M., Spruit, Cindy M., Pérez-Castells, Javier, Domínguez, Gema, Bouwman, Kim M., van der Woude, Roosmarijn, Cañada, Francisco Javier, Nycholat, Corwin M., Paulson, James C., Boons, Geert-Jan, Jiménez-Barbero, Jesús, de Vries, Robert P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10052259/
https://www.ncbi.nlm.nih.gov/pubmed/37006776
http://dx.doi.org/10.1021/jacsau.2c00664
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author Canales, Angeles
Sastre, Javier
Orduña, Jose M.
Spruit, Cindy M.
Pérez-Castells, Javier
Domínguez, Gema
Bouwman, Kim M.
van der Woude, Roosmarijn
Cañada, Francisco Javier
Nycholat, Corwin M.
Paulson, James C.
Boons, Geert-Jan
Jiménez-Barbero, Jesús
de Vries, Robert P.
author_facet Canales, Angeles
Sastre, Javier
Orduña, Jose M.
Spruit, Cindy M.
Pérez-Castells, Javier
Domínguez, Gema
Bouwman, Kim M.
van der Woude, Roosmarijn
Cañada, Francisco Javier
Nycholat, Corwin M.
Paulson, James C.
Boons, Geert-Jan
Jiménez-Barbero, Jesús
de Vries, Robert P.
author_sort Canales, Angeles
collection PubMed
description [Image: see text] Influenza virus infection remains a threat to human health since viral hemagglutinins are constantly drifting, escaping infection and vaccine-induced antibody responses. Viral hemagglutinins from different viruses display variability in glycan recognition. In this context, recent H3N2 viruses have specificity for α2,6 sialylated branched N-glycans with at least three N-acetyllactosamine units (tri-LacNAc). In this work, we combined glycan arrays and tissue binding analyses with nuclear magnetic resonance experiments to characterize the glycan specificity of a family of H1 variants, including the one responsible for the 2009 pandemic outbreak. We also analyzed one engineered H6N1 mutant to understand if the preference for tri-LacNAc motifs could be a general trend in human-type receptor-adapted viruses. In addition, we developed a new NMR approach to perform competition experiments between glycans with similar compositions and different lengths. Our results point out that pandemic H1 viruses differ from previous seasonal H1 viruses by a strict preference for a minimum of di-LacNAc structural motifs.
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spelling pubmed-100522592023-03-30 Revealing the Specificity of Human H1 Influenza A Viruses to Complex N-Glycans Canales, Angeles Sastre, Javier Orduña, Jose M. Spruit, Cindy M. Pérez-Castells, Javier Domínguez, Gema Bouwman, Kim M. van der Woude, Roosmarijn Cañada, Francisco Javier Nycholat, Corwin M. Paulson, James C. Boons, Geert-Jan Jiménez-Barbero, Jesús de Vries, Robert P. JACS Au [Image: see text] Influenza virus infection remains a threat to human health since viral hemagglutinins are constantly drifting, escaping infection and vaccine-induced antibody responses. Viral hemagglutinins from different viruses display variability in glycan recognition. In this context, recent H3N2 viruses have specificity for α2,6 sialylated branched N-glycans with at least three N-acetyllactosamine units (tri-LacNAc). In this work, we combined glycan arrays and tissue binding analyses with nuclear magnetic resonance experiments to characterize the glycan specificity of a family of H1 variants, including the one responsible for the 2009 pandemic outbreak. We also analyzed one engineered H6N1 mutant to understand if the preference for tri-LacNAc motifs could be a general trend in human-type receptor-adapted viruses. In addition, we developed a new NMR approach to perform competition experiments between glycans with similar compositions and different lengths. Our results point out that pandemic H1 viruses differ from previous seasonal H1 viruses by a strict preference for a minimum of di-LacNAc structural motifs. American Chemical Society 2023-02-17 /pmc/articles/PMC10052259/ /pubmed/37006776 http://dx.doi.org/10.1021/jacsau.2c00664 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Canales, Angeles
Sastre, Javier
Orduña, Jose M.
Spruit, Cindy M.
Pérez-Castells, Javier
Domínguez, Gema
Bouwman, Kim M.
van der Woude, Roosmarijn
Cañada, Francisco Javier
Nycholat, Corwin M.
Paulson, James C.
Boons, Geert-Jan
Jiménez-Barbero, Jesús
de Vries, Robert P.
Revealing the Specificity of Human H1 Influenza A Viruses to Complex N-Glycans
title Revealing the Specificity of Human H1 Influenza A Viruses to Complex N-Glycans
title_full Revealing the Specificity of Human H1 Influenza A Viruses to Complex N-Glycans
title_fullStr Revealing the Specificity of Human H1 Influenza A Viruses to Complex N-Glycans
title_full_unstemmed Revealing the Specificity of Human H1 Influenza A Viruses to Complex N-Glycans
title_short Revealing the Specificity of Human H1 Influenza A Viruses to Complex N-Glycans
title_sort revealing the specificity of human h1 influenza a viruses to complex n-glycans
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10052259/
https://www.ncbi.nlm.nih.gov/pubmed/37006776
http://dx.doi.org/10.1021/jacsau.2c00664
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