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Genetic modification to design a stable yeast-expressed recombinant SARS-CoV-2 receptor binding domain as a COVID-19 vaccine candidate

Biochim Biophys Acta Gen Subj. 2021-03; 
Wen-Hsiang Chen, Junfei Wei, Rakhi Tyagi Kundu, Rakesh Adhikari, Zhuyun Liu, Jungsoon Lee, Leroy Versteeg, Cristina Poveda, Brian Keegan, Maria Jose Villar, Ana C de Araujo Leao, Joanne Altieri Rivera, Portia M Gillespie, Jeroen Pollet, Ulrich Strych, Bin Zhan, Peter J Hotez, Maria Elena Bottazzi
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Recombinant Antibody Expression RBD219-N1C1 (residues 332–549, C538A) were codon-optimized based on yeast codon usage preference and synthesized by GenScript (Piscataway, NJ, USA) Get A Quote

摘要

background: Coronavirus disease 2019 (COVID-19) caused by SARS-CoV-2 has now spread worldwide to infect over 110 million people, with approximately 2.5 million reported deaths. A safe and effective vaccine remains urgently needed. methods: We constructed three variants of the recombinant receptor-binding domain (RBD) of the SARS-CoV-2 spike (S) protein (residues 331-549) in yeast as follows: (1) a "wild type" RBD (RBD219-WT), (2) a deglycosylated form (RBD219-N1) by deleting the first N-glycosylation site, and (3) a combined deglycosylated and cysteine-mutagenized form (C538A-mutated variant (RBD219-N1C1)). We compared the expression yields, biophysical characteristics, and functionality of the proteins produce... More

关键词

Biophysical characterization, Biotechnology, Coronavirus, P. pastoris