4.8 Article

Enhancing and shaping the immunogenicity of native-like HIV-1 envelope trimers with a two-component protein nanoparticle

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NATURE COMMUNICATIONS
卷 10, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/s41467-019-12080-1

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资金

  1. U.S. National Institutes of Health [P01 AI110657]
  2. NIAID [HHSN27201100016C]
  3. Bill and Melinda Gates Foundation through the Collaboration for AIDS Vaccine Discovery (CAVD) [OPP1111923, OPP1132237, OPP1115782]
  4. European Union [681137]
  5. Fondation Dormeur, Vaduz
  6. Netherlands Organization for Scientific Research (NWO)
  7. AMC Fellowship from the American Foundation for AIDS Research (amfAR) [109514-61-RKVA]
  8. Mathilde Krim Fellowship from the American Foundation for AIDS Research (amfAR) [109514-61-RKVA]
  9. Consejo Nacional de Ciencia y Tecnologia of Mexico (CONACYT)
  10. Center for Infectious Disease Control of the Netherlands National Institute for Public Health and the Environment

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The development of native-like HIV-1 envelope (Env) trimer antigens has enabled the induction of neutralizing antibody (NAb) responses against neutralization-resistant HIV-1 strains in animal models. However, NAb responses are relatively weak and narrow in specificity. Displaying antigens in a multivalent fashion on nanoparticles (NPs) is an established strategy to increase their immunogenicity. Here we present the design and characterization of two-component protein NPs displaying 20 stabilized SOSIP trimers from various HIV-1 strains. The two-component nature permits the incorporation of exclusively well-folded, native-like Env trimers into NPs that self-assemble in vitro with high efficiency. Immunization studies show that the NPs are particularly efficacious as priming immunogens, improve the quality of the Ab response over a conventional one-component nanoparticle system, and are most effective when SOSIP trimers with an apex-proximate neutralizing epitope are displayed. Their ability to enhance and shape the immunogenicity of SOSIP trimers make these NPs a promising immunogen platform.

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