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Structural analysis of full-length SARS-CoV-2 spike protein from an advanced vaccine candidate
Sandhya Bangaru; Gabriel Ozorowski; Hannah L Turner; Aleksandar Antanasijevic; Deli Huang; Xiaoning Wang; Jonathan L Torres; Jolene K Diedrich; Jing-Hui Tian; Alyse D. Portnoff; Nita Patel; Michael J. Massare; John Robert Yates III; David Nemazee; James C. Paulson; Greg Glenn; Gale Smith; Andrew B. Ward.
Affiliation
  • Sandhya Bangaru; Scripps Research
  • Gabriel Ozorowski; Scripps Research Institute
  • Hannah L Turner; The Scripps Research Institute
  • Aleksandar Antanasijevic; Scripps Research
  • Deli Huang; The Scripps Research Institute
  • Xiaoning Wang; Scripps Research
  • Jonathan L Torres; Scripps Research
  • Jolene K Diedrich; The Scripps Research Institute and The Salk Institute for Biological Studies
  • Jing-Hui Tian; Novavax, Inc.
  • Alyse D. Portnoff; Novavax, Inc.
  • Nita Patel; Novavax, Inc.
  • Michael J. Massare; Novavax, Inc.
  • John Robert Yates III; The Scripps Research Institute
  • David Nemazee; The Scripps Research Institute
  • James C. Paulson; The Scripps Research Institute
  • Greg Glenn; Novavax, Inc.
  • Gale Smith; Novavax, Inc.
  • Andrew B. Ward; The Scripps Research Institute
Preprint in English | bioRxiv | ID: ppbiorxiv-234674
Journal article
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ABSTRACT
Vaccine efforts against the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) responsible for the current COVID-19 pandemic are focused on SARS-CoV-2 spike glycoprotein, the primary target for neutralizing antibodies. Here, we performed cryo-EM and site-specific glycan analysis of one of the leading subunit vaccine candidates from Novavax based on a full-length spike protein formulated in polysorbate 80 (PS 80) detergent. Our studies reveal a stable prefusion conformation of the spike immunogen with slight differences in the S1 subunit compared to published spike ectodomain structures. Interestingly, we also observed novel interactions between the spike trimers allowing formation of higher order spike complexes. This study confirms the structural integrity of the full-length spike protein immunogen and provides a basis for interpreting immune responses to this multivalent nanoparticle immunogen.
License
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Full text: Available Collection: Preprints Database: bioRxiv Language: English Year: 2020 Document type: Preprint
Full text: Available Collection: Preprints Database: bioRxiv Language: English Year: 2020 Document type: Preprint
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