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  • Rational Design of DNA-Expressed Stabilized Native-Like HIV-1 Envelope Trimers.

Rational Design of DNA-Expressed Stabilized Native-Like HIV-1 Envelope Trimers.

Cell reports (2018-09-21)
Yoann Aldon, Paul F McKay, Joel Allen, Gabriel Ozorowski, Réka Felfödiné Lévai, Monica Tolazzi, Paul Rogers, Linling He, Natalia de Val, Katalin Fábián, Gabriella Scarlatti, Jiang Zhu, Andrew B Ward, Max Crispin, Robin J Shattock
ABSTRACT

The HIV-1-envelope glycoprotein (Env) is the main target of antigen design for antibody-based prophylactic vaccines. The generation of broadly neutralizing antibodies (bNAb) likely requires the appropriate presentation of stabilized trimers preventing exposure of non-neutralizing antibody (nNAb) epitopes. We designed a series of membrane-bound Envs with increased trimer stability through the introduction of key stabilization mutations. We derived a stabilized HIV-1 trimer, ConSOSL.UFO.750, which displays a dramatic reduction in nNAb binding while maintaining high quaternary and MPER-specific bNAb binding. Its soluble counterpart, ConSOSL.UFO.664, displays similar antigenicity, and its native-like Env structure is confirmed by negative stain-EM and glycosylation profiling of the soluble ConSOSL.UFO.664 trimer. A rabbit immunization study demonstrated that the ConSOSL.UFO.664 can induce autologous tier 2 neutralization. We have successfully designed a stabilized native-like Env trimer amenable to nucleic acid or viral vector-based vaccination strategies.

MATERIALS
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Sigma-Aldrich
Anti-Rabbit IgG (γ-chain specific)−Biotin antibody, Mouse monoclonal, clone RG-96, purified from hybridoma cell culture