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Rusert, P.

Publications and source records attributed to Rusert, P..

3 recordsLinked to original sources

Assessing bnAb potency in the context of HIV-1 Envelope conformational plasticity

The ability of broadly neutralizing antibodies (bnAbs) to interact with the closed, pre-fusion HIV-1 envelope (Env) trimer distinguishes them from weakly neutralizing antibodies (weak-nAbs) that depend on trimer opening to bind. Comparative analysis of neutralization data from the CATNAP database revealed a nuanced relationship between bnAb activity and Env conformational plasticity, with substantial epitope-specific variation of bnAb potency ranging from increased to decreased activity against open, neutralization-sensitive Env. To systematically investigate the impact of Env conformational dynamics on bnAb potency we screened 126 JR-CSF point mutants for generalized neutralization sensitivity to weak-nAbs and plasma from people with chronic HIV-1 infection. 23 mutations at highly conserved sites resulted in neutralization phenotype with high Tier 1 sensitivity, which was associated with destabilization of the closed, prefusion conformation. Including 19 of these mutants into a Sensitivity Env mutant panel (SENSE-19), we classified bnAbs according to potency variations in response to trimer opening. To verify that these sensitivity patterns are independent of the in vitro assay system, replication-competent SENSE-19 mutant viruses were tested on primary CD4 T cells. While loss of potency on SENSE-19 was registered for bnAbs recognizing quaternary epitopes on pre-triggered Env, structural destabilization benefitted MPER bnAbs and other inhibitors known to have post-CD4 attachment neutralization activity. Importantly, for certain bnAbs targeting CD4bs, V3-glycan and interface epitopes, particularly low potency variation was noted, suggesting that Env conformational tolerance can be achieved but is not the rule. In summary, SENSE-19 screens revealed distinct Env flexibility tolerance levels between bnAb types that provide mechanistic insights in their function and broaden current neutralization breadth assessments. Author summaryConsistently high potency and neutralizing breadth against genetically divergent strains circulating worldwide are central to the applicability of HIV-1 broadly neutralizing antibodies (bnAbs) for prevention and therapy. The trimeric Envelope protein complex on these viruses is the target for nAbs and because of its inherent flexibility can be presented in different shapes. However, the activity of nAbs depends to different degree on the presentation of certain shapes, limiting their potency and breadth. Here we assemble a virus panel that can be used to estimate this dependence, enabling the identification of bnAbs tolerating the presentation of different shapes.

immunology↗

The XbnAb Cohort: 304 people with broadly neutralizing antibody activity to HIV-1

Broadly neutralizing antibodies (bnAbs) recognizing a diversity of HIV-1 strains are widely thought to be essential for an HIV-1 vaccine. Extensive knowledge on bnAbs has been gained from studying natural HIV infection by following bnAb evolution in individual people with HIV (PWH). However, it remains essential to increase knowledge of bnAb responses in large PWH cohorts to assess the feasibility of inducing bnAb activity by vaccination. To allow systematic analysis, we created the XbnAb cohort, a large bnAb-inducer cohort selected by screening plasma of PWH enrolled in the Swiss HIV Cohort Study (SHCS) and the Zurich Primary HIV Infection Study (ZPHI). The XbnAb cohort represents a retrospective, biobank-based cohort comprising data of 305 PWH who developed bnAb activity during HIV-1 infection. Here, we report on the characteristics of the XbnAb cohort and its potential for HIV vaccine research.

immunology↗

Rare twin cysteine residues in the HIV-1 envelope variable region 1 link to neutralization escape and breadth development

The identification of HIV-1 Envelope glycoprotein (Env) traits associated with development of neutralization cross-reactivity in natural infection is critical for vaccine design. Here we describe the presence of additional Cysteine (Cys) residues in V1 that are enriched among people with elite neutralization breadth. Using >65,000 V1 sequences from the CATNAP database, the AMP trials and three large longitudinal HIV infection cohorts, the SHCS, ZPHI and CAPRISA studies, we show that Env variants with extra V1 Cys are present at low levels throughout infection and fluctuate in frequency over time within participants. We demonstrate an independent association of extra V1 Cys with elite plasma neutralization, and a strong preference for two versus one extra Cys, suggesting certain Envs introduce an additional disulfide bond for stabilization. We observed high levels of neutralization resistance among Envs from 34 bNAb donors, of which 17.6% had elongated V1 regions with extra Cys. We show that extra V1 Cys moderately increase neutralization resistance in an Env from a V2- Apex bNAb-inducer. Modulation of the accessibility of bNAb epitopes on this Env by extra V1 Cys enhanced epitope shielding of several regions, but increased V2 exposure. This suggests that escape from autologous neutralizing activity drove insertion of the extra V1 Cys, creating a modified antigen that may have favored V2 bNAb induction in this donor. Overall, we identify a rare motif of twin Cys in V1 that confers increased neutralization resistance and Env stabilization, is associated with bNAb induction, and may hold potential for incorporation into future HIV bNAb immunogens.

immunology↗