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Donius, L.

Publications and source records attributed to Donius, L..

2 recordsLinked to original sources

Heterologous immunization modulates B-cell epitope competition between helper peptides and the MPER segment in MPER/liposome vaccines

Subdominant B-cell immune responses to conserved epitopes are major obstacles in eliciting broadly neutralizing antibodies (bnAbs) against HIV-1 through natural infection or vaccination. Although the sequence conserved membrane proximal external domain (MPER) of HIV-1 gp41 is partially occluded on the virion surface, epitope-focused immunogens could mitigate access limitations. Here, we found that a MPER/liposome vaccine delivered with single CD4 T cell helper epitope results in a post-priming response hierarchy, eliciting low affinity MPER-specific B cells. Heterologous boosting, however, promotes MPER-specific B cell clonal expansion and enhances plasma antibody functionality. This improvement is associated with increased B cell affinity for MPER and reduced competition from B cells targeting the helper epitope. While helper peptide co-delivery increases affinity of serum antibodies, the outcome of subsequent MPER antibody responses is shaped by the priming antigen. Our results offer insights into heterologous immunization strategies to potentiate subdominant B cell responses against frequently mutating viruses. Significance StatementA key challenge in vaccination against mutable viruses like HIV-1 is the immune systems focus on highly variable regions. The conserved MPER segment of gp41 elicits weak antibody responses due to poor B cell accessibility. This study evaluated a liposome-based MPER vaccine strategy. Initial priming generated low-affinity MPER-specific memory B cells, influenced by strong B cell affinity for a dominant T cell helper peptide. However, heterologous boosting overcomes subdominant MPER responses by increasing B cell affinity for booster immunogens while also reducing competition from other helper peptides. Co-delivery of helper peptides enhanced antibody affinity, though the priming antigen was critical in shaping responses. These findings suggest heterologous immunization is a promising strategy to enhance subdominant B cell responses.

immunology↗

Inadequate structural constraint on Fab approach rather than paratope elicitation limits HIV-1 MPER vaccine utility

Broadly neutralizing antibodies (bnAbs) against HIV-1 target conserved epitopes, thereby inhibiting viral entry. Yet surprisingly, those recognizing linear epitopes in the HIV-1 gp41 membrane proximal external region (MPER) are elicited neither by peptide nor protein scaffold vaccines. Here, we observe that while Abs generated by MPER/liposome vaccines may exhibit human bnAb-like paratopes, B-cell programming without constraints imposed by the gp160 ectodomain selects Abs unable to access the MPER within its native "crawlspace". During natural infection, the flexible hinge of IgG3 partially mitigates steric occlusion of less pliable IgG1 subclass Abs with identical MPER specificity, until affinity maturation refines entry mechanisms. The IgG3 subclass maintains B-cell competitiveness, exploiting bivalent ligation resulting from greater intramolecular Fab arm length, offsetting weak antibody affinity. These findings suggest future immunization strategies.

immunology↗