A Bacterially Expressed SARS-CoV-2 Receptor Binding Domain Fused With Cross-Reacting Material 197 A-Domain Elicits High Level of Neutralizing Antibodies in Mice

与交叉反应物质 197A 结构域融合的细菌表达 SARS-CoV-2 受体结合结构域在小鼠中引发高水平中和抗体

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作者:Liqin Liu, Tingting Chen, Lizhi Zhou, Jie Sun, Yuqian Li, Meifeng Nie, Hualong Xiong, Yuhe Zhu, Wenhui Xue, Yangtao Wu, Tingting Li, Tianying Zhang, Zhibo Kong, Hai Yu, Jun Zhang, Ying Gu, Qingbing Zheng, Qinjian Zhao, Ningshao Xia, Shaowei Li

Abstract

The Coronavirus disease 2019 (COVID-19) pandemic presents an unprecedented public health crisis worldwide. Although several vaccines are available, the global supply of vaccines, particularly within developing countries, is inadequate, and this necessitates a need for the development of less expensive, accessible vaccine options. To this end, here, we used the Escherichia coli expression system to produce a recombinant fusion protein comprising the receptor binding domain (RBD) of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2; residues 319-541) and the fragment A domain of Cross-Reacting Material 197 (CRM197); hereafter, CRMA-RBD. We show that this CRMA-RBD fusion protein has excellent physicochemical properties and strong reactivity with COVID-19 convalescent sera and representative neutralizing antibodies (nAbs). Furthermore, compared with the use of a traditional aluminum adjuvant, we find that combining the CRMA-RBD protein with a nitrogen bisphosphonate-modified zinc-aluminum hybrid adjuvant (FH-002C-Ac) leads to stronger humoral immune responses in mice, with 4-log neutralizing antibody titers. Overall, our study highlights the value of this E. coli-expressed fusion protein as an alternative vaccine candidate strategy against COVID-19.

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