ESCRT recruitment to SARS-CoV-2 spike induces virus-like particles that improve mRNA vaccines

ESCRT募集至SARS-CoV-2刺突蛋白可诱导产生病毒样颗粒,从而改善mRNA疫苗的疗效。

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作者:Magnus A G Hoffmann ,Zhi Yang ,Kathryn E Huey-Tubman ,Alexander A Cohen ,Priyanthi N P Gnanapragasam ,Leesa M Nakatomi ,Kaya N Storm ,Woohyun J Moon ,Paulo J C Lin ,Anthony P West Jr ,Pamela J Bjorkman

Abstract

Prime-boost regimens for COVID-19 vaccines elicit poor antibody responses against Omicron-based variants and employ frequent boosters to maintain antibody levels. We present a natural infection-mimicking technology that combines features of mRNA- and protein nanoparticle-based vaccines through encoding self-assembling enveloped virus-like particles (eVLPs). eVLP assembly is achieved by inserting an ESCRT- and ALIX-binding region (EABR) into the SARS-CoV-2 spike cytoplasmic tail, which recruits ESCRT proteins to induce eVLP budding from cells. Purified spike-EABR eVLPs presented densely arrayed spikes and elicited potent antibody responses in mice. Two immunizations with mRNA-LNP encoding spike-EABR elicited potent CD8+ T cell responses and superior neutralizing antibody responses against original and variant SARS-CoV-2 compared with conventional spike-encoding mRNA-LNP and purified spike-EABR eVLPs, improving neutralizing titers >10-fold against Omicron-based variants for 3 months post-boost. Thus, EABR technology enhances potency and breadth of vaccine-induced responses through antigen presentation on cell surfaces and eVLPs, enabling longer-lasting protection against SARS-CoV-2 and other viruses. Keywords: ESCRT; SARS-CoV-2; mRNA vaccines; nanoparticles.

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