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Recombinant H7 hemagglutinin expressed in glycoengineered Pichia pastoris forms nanoparticles that protect mice from challenge with H7N9 influenza virus

Vaccine. 2020; 
Bo Liu, Pingping Shi, Tiantian Wang, Yongkun Zhao, Shihao Lu, Xiang Li, Shiqiang Luo, Shaohong Chang, Sha Wang, Peng Sun, Xin Gong, Yuwei Gao, Jun Wu
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Plasmid DNA Preparation … KC853766.1. The full-length H7N9 HA gene was codon-optimized and synthesized by GenScript (GenScript, Nanjing, China), and the synthesized gene was inserted into the pPICZαA vector at the BstBI and NotI sites to yield the expression plasmid pPICZαA-HA7(2013) … Get A Quote

摘要

Cases of H7N9 human infection caused by an avian-origin H7N9 virus emerged in eastern China in 2013, leading to the urgent requirement of developing an effective vaccine to reduce its pandemic potential. In this report, the full-length recombinant H7 protein (rH7) of A/Hangzhou/1/2013 (H7N9) virus was expressed by a glycoengineered Pichia pastoris system. The rH7 protein underwent complex glycosylation modifications and polymerized to nanoparticles of 30-50 nm in diameter. Recombinant H7 (1.9 µg) elicited a > 1:40 hemagglutination inhibition titer, and 3.75 µg rH7 protected 100% of the mice in the mice challenge model with 10-fold 50% lethal dose of the A/Shanghai/2/2013 (H7N9) rat lung-adapted strain. I... More

关键词

H7N9, Influenza, Influenza vaccine, Subunit vaccine, rH7