Статья

NKp46 O-glycan sequences that are involved in the interaction with hemagglutinin type 1 of influenza virus

M. Mendelson, Y. Tekoah, A. Zilka, O. Gershoni-Yahalom, R. Gazit, H. Achdout, N. Bovin, T. Meningher, M. Mandelboim, O. Mandelboim, A. David, A. Porgador,
2021

Natural killer (NK) cells serve as a crucial first-line defense against tumors and virus-infected cells. We previously showed that lysis of influenza virus (IV)-infected cells is mediated by the interaction between the NK receptor, NKp46, and the IV hemagglutinin (HA) type 1 expressed by the infected cells. This interaction requires the presence of sialyl groups on the NKp46-T225 O-glycoforms. In the current study, we analyzed the O-glycan sequences that are imperative for the interaction between recombinant NKp46 (rNKp46) and IV H1N1 strains. We first showed that rNKp46 binding to IV H1N1 is not mediated by a glycoform unique to the Thr225 site. We then characterized the O-glycan sequences that mediate the interaction of rNKp46 and IV H1N1; we employed rNKp46s with dissimilar glycosylation patterns and IV H1N1 strains with different sialic acid α2,3 and α2,6 linkage preferences. The branched α2,3-sialylated O-glycoform Neu5NAcα2,3-Galp1,4- GlcNAcβ1,6[Neu5NAcα2,3-Galβ1,3]GalNAc competently mediated the interaction of rNKp46 with IV H1N1, manifesting a preference for α2,3 linkage. In contrast, the linear α2,3-sialylated O-glycoform Neu5NAcα2,3-Galβ1,3-GalNAc was not correlated with enhanced interaction between rNKp46 and IV H1N1 or a preference for α2,3 linkage. The branched α2,3-and α2,6-sialylated O-glycoform Neu5NAcα2,3-Galp1,3[Neu5NAcα2,6]GalNAc competently mediated the interaction of rNKp46 with IV H1N1, manifesting a preference for α2,6 linkage. Previous viral HA-binding-specificity studies were performed with glycopolymer conjugates, free synthetic sialyl oligosaccharides, and sialidase-treated cells. This study shed light on the O-glycan sequences involved in the interaction of glycoprotein and viral hemagglutinins and may help in the design of agents inhibitory to hemagglutinin for influenza treatment. Copyright © 2010, American Society for Microbiology. All Rights Reserved.

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  • 1. Version of Record от 2021-04-27

Метаданные

Об авторах
  • M. Mendelson
    Shraga Segal Department of Microbiology and Immunology, National Institute for Biotechnology in the Negev, Ben Gurion University of the Negev, Beer-Sheva 84105, Israel
  • Y. Tekoah
    Center for Glycobiology, Department of Biotechnology Engineering, Ben-Gurion University of the Negev, Beer-Sheva 84105, Israel
  • A. Zilka
    Lautenberg Center for General and Tumor Immunology, Hebrew University-Hadassah, Medical School, Jerusalem, Israel
  • O. Gershoni-Yahalom
    Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry, Russian Academy of Sciences, Ul. Miklukho-Maklaya 16/10, Moscow GSP-7, 117997, Russian Federation
  • R. Gazit
    Central Virology Laboratory, Public Health Services, Ministry of Health, Sheba Medical Center, Tel-Hashomer, Israel
  • H. Achdout
    Department of Clinical Pharmacology, Ben Gurion University of the Negev, Beer-Sheva 84105, Israel
  • N. Bovin
  • T. Meningher
  • M. Mandelboim
  • O. Mandelboim
  • A. David
  • A. Porgador
Название журнала
  • Journal of Virology
Том
  • 84
Выпуск
  • 8
Страницы
  • 3789-3797
Ключевые слова
  • glycan; natural cytotoxicity triggering receptor 1; natural killer cell receptor; o glycan; sialic acid; unclassified drug; virus hemagglutinin; hemagglutinin, human influenza A virus; Influenza virus hemagglutinin; NCR1 protein, human; polysaccharide; animal cell; article; gene sequence; glycosylation; human; human cell; Influenza virus A H1N1; natural killer cell; nonhuman; priority journal; protein interaction; receptor binding; chemistry; immunology; metabolism; natural killer cell; protein binding; protein domain; Orthomyxoviridae; Hemagglutinin Glycoproteins, Influenza Virus; Influenza A Virus, H1N1 Subtype; Killer Cells, Natural; Natural Cytotoxicity Triggering Receptor 1; Polysaccharides; Protein Binding; Protein Interaction Domains and Motifs
Тип документа
  • journal article
Источник
  • scopus