Ability of nucleoside-modified mRNA to encode HIV-1 envelope trimer nanoparticles

核苷修饰的 mRNA 编码 HIV-1 包膜三聚体纳米粒子的能力

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作者:Zekun Mu, Kevin Wiehe, Kevin O Saunders, Rory Henderson, Derek W Cain, Robert Parks, Diana Martik, Katayoun Mansouri, Robert J Edwards, Amanda Newman, Xiaozhi Lu, Shi-Mao Xia, Mattia Bonsignori, David Montefiori, Qifeng Han, Sravani Venkatayogi, Tyler Evangelous, Yunfei Wang, Wes Rountree, Ying Tam,

Abstract

The success of nucleoside-modified mRNAs in lipid nanoparticles (mRNA-LNP) as COVID-19 vaccines heralded a new era of vaccine development. For HIV-1, multivalent envelope (Env) trimer protein nanoparticles are superior immunogens compared to trimers alone for priming of broadly neutralizing antibody (bnAb) B cell lineages. The successful expression of complex multivalent nanoparticle immunogens with mRNAs has not been demonstrated. Here we show that mRNAs can encode antigenic Env trimers on ferritin nanoparticles that initiate bnAb precursor B cell expansion and induce serum autologous tier 2 neutralizing activity in bnAb precursor VH + VL knock-in mice. Next generation sequencing demonstrated acquisition of critical mutations, and monoclonal antibodies that neutralized heterologous HIV-1 isolates were isolated. Thus, mRNA-LNP can encode complex immunogens and are of use in design of germline-targeting and sequential boosting immunogens for HIV-1 vaccine development.

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