๐ Immunodominant SARS coronavirus epitopes in humans elicited both enhancing and neutralizing effects on infection in non-human primates
ยฉ 2016 American Chemical Society. Severe acute respiratory syndrome (SARS) is caused by a coronavirus (SARS-CoV) and has the potential to threaten global public health and socioeconomic stability. Evidence of antibody-dependent enhancement (ADE) of SARS-CoV infection in vitro and in non-human primates clouds the prospects for a safe vaccine. Using antibodies from SARS patients, we identified and characterized SARS-CoV B-cell peptide epitopes with disparate functions. In rhesus macaques, the spike glycoprotein peptides S471-503, S604-625, and S1164-1191 elicited antibodies that efficiently prevented infection in non-human primates. In contrast, peptide S597-603 induced antibodies that enhanced infection both in vitro and in non-human primates by using an epitope sequence-dependent (ESD) mechanism. This peptide exhibited a high level of serological reactivity (64%), which resulted from the additive responses of two tandem epitopes (S597-603 and S604-625) and a long-term human B-cell memory response with antisera from convalescent SARS patients. Thus, peptide-based vaccines against SARS-CoV could be engineered to avoid ADE via elimination of the S597-603 epitope. We provide herein an alternative strategy to prepare a safe and effective vaccine for ADE of viral infection by identifying and eliminating epitope sequence-dependent enhancement of viral infection.
keywords
๐ public health (392)
๐ spike glycoprotein (99)
๐ rhesus macaques (12)
๐ respiratory syndrome (2004)
๐ acute respiratory (1734)
author
๐ค Wang, Qidi
๐ค Zhang, Lianfeng
๐ค Kuwahara, Kazuhiko
๐ค Li, Li
๐ค Liu, Zijie
๐ค Li, Taisheng
๐ค Zhu, Hua
๐ค Liu, Jiangning
๐ค Xu, Yanfeng
๐ค Xie, Jing
๐ค Morioka, Hiroshi
๐ค Sakaguchi, Nobuo
๐ค Qin, Chuan
๐ค Liu, Gang
year
โฐ 2016
journal
๐ ACS Infectious Diseases
issn
๐ 23738227
volume
2
number
5
page
361-376
citedbycount
2
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