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May 9, 2026Science6 citationsOpen Access

Induction of broadly neutralizing HIV antibodies by a two-step mechanism informs vaccine design

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ASAshwin N. SkellyHGHarry B. GristickHLHui Li

Key Points

  • The study aims to investigate a two-step mechanism for inducing broadly neutralizing antibodies (bNAbs) against HIV-1 to inform vaccine design.
  • Designed an epitope-focused simian-human immunodeficiency virus (SHIV.5MUT)
  • Infected 22 macaques and compared with 14 control animals
  • Analyzed antibody responses and Env-bNAb coevolution.
  • 14 of 22 macaques developed V3-glycan-targeted antibodies within a year of infection, compared to 0 of 14 controls.
  • Initial wave of V1-directed antibodies selected for Env variants with shortened, hypoglycosylated V1 loops.
  • Rhesus bNAbs were diverse and structurally similar to human V3-glycan bNAbs.

Abstract

A major obstacle confronting HIV-1 vaccine and cure research is the lack of an outbred animal model for rapid and consistent induction of broadly neutralizing antibodies (bNAbs). We designed an epitope-focused simian-human immunodeficiency virus (SHIV.5MUT) that elicited broad and potent V3-glycan-targeted antibodies within a year of infection in 14 of 22 macaques compared with 0 of 14 control animals. SHIV.5MUT elicited bNAbs by a two-step mechanism, inducing an initial wave of V1-directed antibodies that selected for Envs with shortened, hypoglycosylated V1 loops, which in turn primed V3-glycan bNAb precursors. Rhesus bNAbs were immunogenetically and structurally diverse, closely resembling human V3-glycan bNAbs. Env-bNAb coevolution revealed a diverse repertoire of bNAb precursors and the Env variants that matured them, yielding a molecular blueprint for vaccine design.

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Cite This Study

Skelly et al. (2026) studied this question.

synapsesocial.com/papers/69fecfcdb9154b0b82876d2ehttps://doi.org/10.1126/science.aec6396
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