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Biology subjects

James, N. E.

Publications and source records attributed to James, N. E..

4 recordsLinked to original sources

Extensive global HIV-1 sequence diversity perturbs conserved features of the envelope glycan shield

The extensive sequence diversity and glycosylation of the HIV-1 envelope glycoprotein pose a challenge for vaccine design efforts aimed at eliciting glycan-binding broadly neutralizing antibodies (bnAbs). Understanding how HIV-1 glycosylation varies across diverse strains is therefore of considerable interest. Here, we employed mass spectrometry to map the site-specific glycan composition of pseudoviruses from an established 12-virus panel representing global sequence diversity. We refine the current model of the viral glycan shield by showing how the presence or absence of glycans can modulate the composition and perimeter of the mannose patch, where glycans exhibit limited maturation. Importantly, we show that within the Clade A 398F1 strain, isolated in Tanzania, the trimer apex exhibited elevated glycan maturation and resistance to apex-directed bnAbs. These findings demonstrate that the 12-virus panel reveals both conserved glycan-dependent epitopes and strains with exceptional glycosylation features that may impact the generality of vaccine design efforts targeting particular epitopes.

biochemistry↗

Structure-guided design of native-like HIV Env Single Chain Trimers for enhanced stability, immunogenicity, and versatile vaccine delivery

Stabilizing the HIV envelope (Env) trimer in its native prefusion conformation is key to eliciting broadly neutralizing antibodies (bnAbs). We present a generalizable single-chain trimer-(SCT) design platform that enables the production of stable, native-like Env trimers across diverse HIV strains. Using a structure-guided approach, we developed CAP256.SU-SCT9, based on a CAP256.SU Env shown to induce V2-apex bnAbs in humans and rhesus macaques. CAP256.SU-SCT9 trimer exhibited native-like structure, bnAb-specific antigenicity, authentic glycosylation, and compatibility with nucleic acid and nanoparticle delivery. We extended this design strategy to a panel of HIV Envs representing global diversity, and immunogens known to initiate bnAb responses in humans. Structural analyses confirmed that SCTs consistently maintained prefusion-closed conformations, favorable glycan profiles, strong binding to trimer-specific bnAbs, and low reactivity with non-neutralizing antibodies. These findings establish SCT as a versatile platform for HIV trimer immunogen design, with potential to support next-generation vaccines aimed at eliciting protective bnAb responses.

immunology↗

Germline-targeting HIV immunogen induces cross-neutralizing antibodies in outbred macaques

Germline-targeting-(GT) is a promising strategy to activate rare broadly neutralizing antibody (bnAb)-producing B cells against HIV, but induction of such responses in outbred animals has not been achieved. Using antibody-guided structure-based design, we engineered a germline-targeting trimer immunogen Q23-APEX-GT2 that primes diverse V2-apex bnAb precursors. Q23-APEX-GT2 efficiently activated V2-apex-specific B cells in humanized knock-in mice and consistently elicited immunofocused antibody responses in rhesus macaques, priming multiple long CDRH3-loop bnAb-B cell lineages. Monoclonal antibodies from immunized macaques exhibited broad heterologous HIV trimer binding and cross-neutralization. Atomic-level structural studies confirmed precise epitope targeting and revealed CDRH3-paratope configurations that mirrored those of human V2-apex bnAbs. This study provides proof-of-principle for successful priming and maturation of authentic V2-apex bnAb precursors in outbred macaques, underscoring the potential of V2-apex-targeted vaccines. HIGHLIGHTSO_LIEngineered Q23-APEX-GT2 trimer to stimulate diverse V2-apex bnAb B cell precursors C_LIO_LIQ23-APEX-GT2 primed rare V2-apex bnAb B cells in mice and outbred rhesus macaques C_LIO_LIQ23-APEX-GT2 elicited immunofocused antibody responses and diverse V2-apex B cell lineages with desirable long-CDRH3 paratope properties C_LIO_LIQ23-APEX-GT2 alone induced V2-apex antibodies with broad HIV trimer binding and modest neutralization breadth C_LIO_LIStructural analysis confirmed bnAb site targeting, mirroring human and rhesus V2-apex bnAbs C_LI

immunology↗

Rapid acquisition of HIV-1 neutralization breadth in a rhesus V2 apex germline antibody mouse model after a single bolus immunization

Current vaccine strategies to elicit broadly neutralizing antibodies (bnAbs) against HIV-1 generally propose complex, multi-boost immunization regimens. In rhesus macaques, SHIV infection has been observed to rapidly drive the development of some classes of bnAbs that share structural similarities with those in humans. Here, we generated a knockin mouse model with B cells bearing the unmutated common ancestor (UCA) of the V2 apex-targeted bnAb lineage, V033-a. A single immunization of mice with a germline-targeting native-like trimer was sufficient to recapitulate the ontogeny of the mature rhesus bnAb in knockin mice--including rare, disfavored somatic mutations--leading to the induction of antibodies that exhibited potent neutralization against both autologous and heterologous tier 2 viruses. A boost with Env escape mutant trimers further improved breadth and potency, and cryo-EM structure revealed the structural basis for heterologous neutralization breadth. Non-human primate and mouse models can thus combine with structure to serve as a platform for identifying and confirming immunogens that streamline HIV-vaccination regimens.

immunology↗