4.5 Article

Structures of MERS-CoV spike glycoprotein in complex with sialoside attachment receptors

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NATURE STRUCTURAL & MOLECULAR BIOLOGY
卷 26, 期 12, 页码 1151-+

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NATURE PUBLISHING GROUP
DOI: 10.1038/s41594-019-0334-7

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资金

  1. National Institute of General Medical Sciences [R01GM120553]
  2. National Institute of Allergy and Infectious Diseases [HHSN272201700059C]
  3. Pew Biomedical Scholars Award
  4. Burroughs Wellcome Fund
  5. Swiss National Science Foundation
  6. Institut Pasteur
  7. Arnold and Mabel Beckman cryo-EM center at the University of Washington

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The Middle East respiratory syndrome coronavirus (MERS-CoV) causes severe and often lethal respiratory illness in humans, and no vaccines or specific treatments are available. Infections are initiated via binding of the MERS-CoV spike (S) glycoprotein to sialosides and dipeptidyl-peptidase 4 (the attachment and entry receptors, respectively). To understand MERS-CoV engagement of sialylated receptors, we determined the cryo-EM structures of S in complex with 5-N-acetyl neuraminic acid, 5-N-glycolyl neuraminic acid, sialyl-Lewis(x), alpha 2,3-sialyl-N-acetyl-lactosamine and alpha 2,6-sialyl-N-acetyl-lactosamine at 2.7-3.0 angstrom resolution. We show that recognition occurs via a conserved groove that is essential for MERS-CoV S-mediated attachment to sialosides and entry into human airway epithelial cells. Our data illuminate MERS-CoV S sialoside specificity and suggest that selectivity for alpha 2,3-linked over alpha 2,6-linked receptors results from enhanced interactions with the former class of oligosaccharides. This study provides a structural framework explaining MERS-CoV attachment to sialoside receptors and identifies a site of potential vulnerability to inhibitors of viral entry.

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