Single-component, self-assembling, protein nanoparticles presenting the receptor binding domain and stabilized spike as SARS-CoV-2 vaccine candidates
Однокомпонентные самоорганизующиеся белковые наночастицы, представляющие рецептор-связывающий домен и стабилизированный спайк-белок, как кандидаты на вакцину против SARS-CoV-2
2021-03-19
SCID: 54.1/4myavrxy
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SARS-CoV-2 vaccine candidatesSpyTag/SpyCatcher systemreceptor-binding domainself-assembling protein nanoparticlesstabilized spike protein
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Abstract (AI)
Vaccination against SARS-CoV-2 provides an effective tool to combat the COVID-19 pandemic. Here, we combined antigen optimization and nanoparticle display to develop vaccine candidates for SARS-CoV-2. We first displayed the receptor-binding domain (RBD) on three self-assembling protein nanoparticle (SApNP) platforms using the SpyTag/SpyCatcher system. We then identified heptad repeat 2 (HR2) in S2 as the cause of spike metastability, designed an HR2-deleted glycine-capped spike (S2GΔHR2), and displayed S2GΔHR2 on SApNPs. An antibody column specific for the RBD enabled tag-free vaccine purification. In mice, the 24-meric RBD-ferritin SApNP elicited a more potent neutralizing antibody (NAb) response than the RBD alone and the spike with two stabilizing proline mutations in S2 (S2P). S2GΔHR2 elicited twofold higher NAb titers than S2P, while S2GΔHR2 SApNPs derived from multilayered E2p and I3-01v9 60-mers elicited up to 10-fold higher NAb titers. The S2GΔHR2-presenting I3-01v9 SApNP also induced critically needed T cell immunity, thereby providing a promising vaccine candidate.
Key Findings
1
An RBD-specific antibody column enabled tag-free purification of nanoparticle vaccines.
2
Heptad repeat 2 in S2 was identified as a cause of spike metastability, enabling design of a glycine-capped, HR2-deleted spike antigen, S2GΔHR2.
3
RBD display on self-assembling protein nanoparticles was combined with spike antigen optimization to develop SARS-CoV-2 vaccine candidates.
4
S2GΔHR2 induced twofold higher neutralizing antibody titers than S2P, while E2p- and I3-01v9-based 60-mer nanoparticles increased titers by up to tenfold and the I3-01v9 construct also induced T-cell immunity.
5
The 24-meric RBD-ferritin nanoparticle elicited stronger neutralizing antibody responses in mice than RBD alone or the two-proline-stabilized spike S2P.
Research Object
SARS-CoV-2 vaccine candidates based on self-assembling protein nanoparticles displaying the receptor-binding domain or stabilized spike antigens
Research Subject
Antigen stability, nanoparticle display, and the resulting neutralizing-antibody and T-cell immunogenicity of the vaccine candidates
Publication Details
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2021-03-19
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