4.7 Article

Glycosylation and Serological Reactivity of an Expression-enhanced SARS-CoV-2 Viral Spike Mimetic

期刊

JOURNAL OF MOLECULAR BIOLOGY
卷 434, 期 2, 页码 -

出版社

ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1016/j.jmb.2021.167332

关键词

SARS-CoV-2; glycosylation; serology; glycoprotein; antibody

资金

  1. International AIDS Vaccine Initiative (IAVI) - Bill and Melinda Gates Foundation [INV-008352/OPP1153692]
  2. University of Southampton Coronavirus Response Fund
  3. BII - A*STAR [FY21_CF_HTPO SEED_ID_BII_C211418001]
  4. RIKEN through the HPCI System Research Project [hp200303]
  5. Welch Foundation [F-0003-19620604]
  6. Medical Research Council
  7. Global Challenges Research Fund (GCRF)
  8. Institute for Global Innovation (IG1 Project) of the University of Birmingham [3107]
  9. Wellcome Trust [108871/Z/15/Z]

向作者/读者索取更多资源

The glycosylation of the expression-enhanced spike protein resembles that of an earlier version but with some differences; both HexaPro and 2P proteins are able to detect immune responses in infected individuals; variations in glycan processing do not impact serological assessments being performed globally.
Extensive glycosylation of viral glycoproteins is a key feature of the antigenic surface of viruses and yet glycan processing can also be influenced by the manner of their recombinant production. The low yields of the soluble form of the trimeric spike (S) glycoprotein from SARS-CoV-2 has prompted advances in protein engineering that have greatly enhanced the stability and yields of the glycoprotein. The latest expression-enhanced version of the spike incorporates six proline substitutions to stabilize the prefusion conformation (termed SARS-CoV-2 S HexaPro). Although the substitutions greatly enhanced expression whilst not compromising protein structure, the influence of these substitutions on glycan processing has not been explored. Here, we show that the site-specific N-linked glycosylation of the expression-enhanced HexaPro resembles that of an earlier version containing two proline substitutions (2P), and that both capture features of native viral glycosylation. However, there are site-specific differences in glycosylation of HexaPro when compared to 2P. Despite these discrepancies, analysis of the serological reactivity of clinical samples from infected individuals confirmed that both HexaPro and 2P protein are equally able to detect IgG, IgA, and IgM responses in all sera analysed. Moreover, we extend this observation to include an analysis of glycan engineered S protein, whereby all N-linked glycans were converted to oligomannose-type and conclude that serological activity is not impacted by large scale changes in glycosylation. These observations suggest that variations in glycan processing will not impact the serological assessments currently being performed across the globe. (C) 2021 The Authors. Published by Elsevier Ltd.

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