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Biology subjects

Auguste, A. J.

Publications and source records attributed to Auguste, A. J..

2 recordsLinked to original sources

A novel bacterial protease inhibitor adjuvant in RBD-based COVID-19 vaccine formulations increases neutralizing antibodies, specific germinal center B cells and confers protection against SARS-CoV-2 infection.

In this work we evaluated recombinant receptor binding domain (RBD) based vaccine formulation prototypes with potential for further clinical development. We assessed different formulations containing RBD plus Alum, AddaS03, AddaVax or the combination of Alum and U-Omp19: a novel Brucella spp. protease inhibitor vaccine adjuvant. Results show that the vaccine formulation composed of U-Omp19 and Alum as adjuvants have a better performance: it significantly increased mucosal and systemic neutralizing antibodies in comparison to antigen plus Alum, AddaVax or AddaS03. Antibodies induced with the formulation containing U-Omp19 not only increased their neutralization capacity against the wild-type virus but also cross neutralized alpha, lambda and gamma variants with similar potency. Also, addition of U-Omp19 to vaccine formulation increased the frequency of RBD-specific geminal center B cells and plasmablasts. Additionally, U-Omp19+Alum formulation induced RBD-specific Th1 and CD8+ T cell responses in spleens and lungs. Finally, this vaccine formulation conferred protection against an intranasal SARS-CoV-2 challenge of K18-hACE2 mice.

immunology↗

Near-atomic resolution Cryo-EM structure of Mayaro virus identifies key structural determinants of alphavirus particle formation

Mayaro virus (MAYV) is an arthritis-inducing alphavirus circulating in the Americas, with potential to rapidly emerge in new geographical regions and populated environments. Intraparticle heterogeneity has typically limited atomic resolution structures of alphavirus virions, while imposing icosahedral symmetry in data processing prevents characterization of non-icosahedral features. Here, we report a near-atomic resolution cryo-EM structure of the MAYV E1-E2-E3-CP subunit by addressing deviations from icosahedral symmetry within each virus particle. We identified amino acid contacts at E1 protein interfaces forming the icosahedral lattice and investigated their effect on MAYV growth through site-directed mutagenesis. Further, mutation of a short stretch of conserved residues in E2 subdomain D, near an unidentified "pocket factor" including E2Y358, significantly reduced MAYV growth and provides strong evidence that this unknown factor influences assembly. Further, a symmetry-free reconstruction revealed the MAYV virion is not strictly icosahedral, suggesting defects in global symmetry may be a feature of the virus particle budding process. Our study provides insights into alphavirus assembly and suggests a common path in the formation of spherical, enveloped viruses, leading to particle imperfections.

microbiology↗