块(置换群论)
病毒学
严重急性呼吸综合征冠状病毒2型(SARS-CoV-2)
Sars病毒
生物
计算生物学
2019年冠状病毒病(COVID-19)
2019-20冠状病毒爆发
医学
几何学
数学
爆发
病理
传染病(医学专业)
疾病
作者
Paul-Albert Koenig,Hrishikesh Das,Hejun Liu,Beate M. Kümmerer,Florian N. Gohr,Lea‐Marie Jenster,Lisa D. J. Schiffelers,Yonas M. Tesfamariam,Miki Uchima,Jennifer Deborah Wuerth,Karl Gatterdam,Natalia Ruétalo,Maria H Christensen,Caroline I. Fandrey,Sabine Normann,Jan M. P. Tödtmann,Steffen Pritzl,Leo Hanke,Jannik Boos,Meng Yuan
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2021-01-12
卷期号:371 (6530)
被引量:380
标识
DOI:10.1126/science.abe6230
摘要
The pandemic caused by severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) continues to spread, with devastating consequences. For passive immunization efforts, nanobodies have size and cost advantages over conventional antibodies. In this study, we generated four neutralizing nanobodies that target the receptor binding domain of the SARS-CoV-2 spike protein. We used x-ray crystallography and cryo-electron microscopy to define two distinct binding epitopes. On the basis of these structures, we engineered multivalent nanobodies with more than 100 times the neutralizing activity of monovalent nanobodies. Biparatopic nanobody fusions suppressed the emergence of escape mutants. Several nanobody constructs neutralized through receptor binding competition, whereas other monovalent and biparatopic nanobodies triggered aberrant activation of the spike fusion machinery. These premature conformational changes in the spike protein forestalled productive fusion and rendered the virions noninfectious.
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