4.8 Article

Enhancing glycan occupancy of soluble HIV-1 envelope trimers to mimic the native viral spike

Journal

CELL REPORTS
Volume 35, Issue 1, Pages -

Publisher

CELL PRESS
DOI: 10.1016/j.celrep.2021.108933

Keywords

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Categories

Funding

  1. NIH [P0 AI110657]
  2. Bill and Melinda Gates Foundation through the Collaboration for AIDS Vaccine Discovery (CAVD) [OPP1132237, INV-002022]
  3. Scripps Consortium for HIV Vaccine Development (CHAVD) [AI144462]
  4. European Union's Horizon 2020 research and innovation programme [681137]
  5. Aids Fonds [2016019]
  6. Foundation Dormeur, Vaduz
  7. Netherlands Organisation for Scientific Research (NWO)
  8. AMC Fellowship from the American Foundation for AIDS Research (amfAR) [109514-61-RKVA]
  9. Mathilde Krim Fellowship from the American Foundation for AIDS Research (amfAR) [109514-61-RKVA]
  10. NIH F31 Ruth L. Kirschstein Predoctoral Award [Al131873]
  11. Achievement Rewards for College Scientists Foundation
  12. Amsterdam Infection and Immunity Institute (AIII)
  13. IAVI Neutralizing Antibody Center through the CAVD grant - Bill and Melinda Gates Foundation [OPP1084519, OPP1196345/INV-008813]

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Artificial glycan holes can induce strain-specific neutralizing antibodies or non-neutralizing antibodies on recombinant Env-based vaccines. By replacing NxS with NxT, researchers have successfully increased the occupancy of most N-linked glycosylation sites to mimic native glycosylation and eliminate glycan holes.
Artificial glycan holes on recombinant Env-based vaccines occur when a potential N-linked glycosylation site (PNGS) is under-occupied, but not on their viral counterparts. Native-like SOSIP trimers, including clinical candidates, contain such holes in the glycan shield that induce strain-specific neutralizing antibodies (NAbs) or non-NAbs. To eliminate glycan holes and mimic the glycosylation of native BG505 Env, we replace all 12 NxS sequons on BG505 SOSIP with NxT. All PNGS, except N133 and N160, are nearly fully occupied. Occupancy of the N133 site is increased by changing N133 to NxS, whereas occupancy of the N160 site is restored by reverting the nearby N156 sequon to NxS. Hence, PNGS in close proximity, such as in the N133-N137 and N156-N160 pairs, affect each other's occupancy. We further apply this approach to improve the occupancy of several Env strains. Increasing glycan occupancy should reduce off-target immune responses to vaccine antigens.

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