4.4 Article

Structure and N-acetylglucosamine binding of the distal domain of mouse adenovirus 2 fibre

Journal

JOURNAL OF GENERAL VIROLOGY
Volume 99, Issue 11, Pages 1494-1508

Publisher

MICROBIOLOGY SOC
DOI: 10.1099/jgv.0.001145

Keywords

adenovirus fibre; infection inhibition; ligand; crystal structure; affinity; gastrointestinal tract

Funding

  1. Spanish Agencia Estatal de Investigacion [BFU2014-53425-P, CTQ2015-64597-P-C02-01, CTQ2015-64597-P-C02-02, BFU201570052-R]
  2. Spanish Adenovirus Network (AdenoNet) from the Spanish Agencia Estatal de Investigacion [BIO2015-68990-REDT]
  3. CIBER of Respiratory Diseases (CIBERES) from the Spanish Institute of Health Carlos III
  4. European Regional Development Fund of the European Union
  5. La Caixa
  6. CSIC-VAST
  7. Hungarian Scientific Research Fund [OTKA K100163]
  8. Enterprise Ireland [CF/2015/0089]
  9. National University of Ireland
  10. GlycoHIT consortium [260600]
  11. National Institute for Allergy and Infectious Diseases [R01 AI104920]
  12. Helen Riaboff Whiteley Endowment
  13. Public Health Service, National Research Service Awards from the National Institute for Allergy and Infectious Diseases [T32 AI083203]
  14. National Institute of General Medical Sciences [T32 GM007270]
  15. NATIONAL INSTITUTE OF ALLERGY AND INFECTIOUS DISEASES [T32AI083203, R01AI104920] Funding Source: NIH RePORTER
  16. NATIONAL INSTITUTE OF GENERAL MEDICAL SCIENCES [T32GM007270] Funding Source: NIH RePORTER

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Murine adenovirus 2 (MAdV-2) infects cells of the mouse gastrointestinal tract. Like human adenoviruses, it is a member of the genus Mastadenovirus, family Adenoviridae. The MAdV-2 genome has a single fibre gene that expresses a 787 residue-long protein. Through analogy to other adenovirus fibre proteins, it is expected that the carboxy-terminal virus-distal head domain of the fibre is responsible for binding to the host cell, although the natural receptor is unknown. The putative head domain has little sequence identity to adenovirus fibres of known structure. In this report, we present high-resolution crystal structures of the carboxy-terminal part of the MAdV-2 fibre. The structures reveal a domain with the typical adenovirus fibre head topology and a domain containing two triple beta-spiral repeats of the shaft domain. Through glycan microarray profiling, saturation transfer difference nuclear magnetic resonance spectroscopy, isothermal titration calorimetry and site-directed mutagenesis, we show that the fibre specifically binds to the monosaccharide N-acetylglucosamine (GlcNAc). The crystal structure of the complex reveals that GlcNAc binds between the AB and CD loops at the top of each of the three monomers of the MAdV-2 fibre head. However, infection competition assays show that soluble GlcNAc monosaccharide and natural GlcNAc-containing polymers do not inhibit infection by MAdV-2. Furthermore, site-directed mutation of the GlcNAc-binding residues does not prevent the inhibition of infection by soluble fibre protein. On the other hand, we show that the MAdV-2 fibre protein binds GlcNAc-containing mucin glycans, which suggests that the MAdV-2 fibre protein may play a role in viral mucin penetration in the mouse gut.

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