bioRxiv · 10.1101/2024.06.07.597873
A VLP vaccine platform comprising the core protein of hepatitis B virus with N-terminal antigen capture
Abstract
Nanoparticle presentation systems offer the potential to develop new vaccines rapidly in response to emerging diseases, a public health need that has become increasingly evident in the wake of the COVID-19 pandemic. Previously, we reported a nanoparticle scaffold system termed VelcroVax. This was constructed by insertion of a high affinity SUMO binding protein (Affimer), able to recognise a SUMO peptide tag, into the major immunodominant region of VLPs assembled from a tandem (fused dimer) form of hepatitis B virus (HBV) core protein (HBc). Here we describe a modified form of VelcroVax, comprising monomeric HBc with the Affimer inserted at the N-terminus (termed N-VelcroVax). In contrast to the tandem form of VelcroVax, N-VelcroVax VLPs were expressed well in E. coli. The VLPs effectively bound SUMO-tagged Junin virus glycoprotein, gp1 as assessed by structural and serological analyses. Cryo-EM characterisation of N-VelcroVax complexed with a SUMO-Junin gp1 showed continuous density attributable to the fused Affimer, in addition to evidence of target antigen capture. Collectively, these data suggest that N-VelcroVax has potential as a versatile next generation vaccine scaffold.
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Fatema, K., Snowden, J. S., Watson, A., Sherry, L., Ranson, N. A., Rowlands, D., Stonehouse, N. J.. 2024-06-07. A VLP vaccine platform comprising the core protein of hepatitis B virus with N-terminal antigen capture. https://doi.org/10.1101/2024.06.07.597873
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