bioRxiv · 10.64898/2026.08.25.746952
Consensus native-like hepatitis C virus E1E2 engages broadly neutralizing antibody precursors
Abstract
A major goal for hepatitis C virus (HCV) vaccine development is to elicit broadly neutralizing antibodies (bNAbs) against the E1E2 glycoprotein complex located on the viral surface. Inducing HCV bNAbs requires engagement of their germline B cell precursors. HCV glycoproteins usually do not bind and activate inferred germline precursors of bNAbs (igl-bNAbs), possibly because most circulating strains contain non-conserved isolate-specific residues, even in bNAb epitopes. Here, we generated stabilized native-like soluble E1E2 (sE1E2) antigens based on a consensus sequence of HCV (HepCon) to limit the exposure of antigenically rare residues. The antigenicity and glycosylation profiles show that HepCon sE1E2 resembles a native-like E1E2 heterodimer. HepCon sE1E2 induced cross-reactive neutralizing antibody responses as a soluble protein immunogen and as membrane-anchored mRNA-delivered immunogen in animals. Importantly, HepCon sE1E2 engages multiple igl-bNAbs against two major epitopes: antigenic region 3 (AR3), which is targeted by igl-bNAbs derived from the widely expressed human VH1-69 B cell gene, and antigenic region 4 (AR4), which is only present on native-like E1E2. Nanoparticles with HepCon sE1E2 efficiently activated B cell lines expressing AR3 and AR4 igl-bNAb B cell receptors in vitro. Finally, using HepCon sE1E2 we elucidated the atomic contacts of an AR3 igl-bNAb by cryo-electron microscopy. Thus, HepCon sE1E2 is a promising candidate for germline-targeting vaccination strategies.
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Mulder, F., Cannac, F., Capella-Pujol, J., Peters, S., Poniman, M., Olijhoek, W., Granger, L., Briones-Orta, M., Paschos, K., van der Pol, S., Walen, R., Newby, M. L., Lee, W.-H., Radic, L., Zon, I., Weber, T., Crispin, M., Klein, F., Shattock, R. J., Sanders, R. W., Ward, A., Schinkel, j., Sliepen, K.. 2026-08-26. Consensus native-like hepatitis C virus E1E2 engages broadly neutralizing antibody precursors. https://doi.org/10.64898/2026.08.25.746952
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