生物
突变
病毒学
穗蛋白
遗传学
严重急性呼吸综合征冠状病毒2型(SARS-CoV-2)
作者
Jun Zhang,Yongfei Cai,Christy L. Lavine,Hanqin Peng,Haisun Zhu,Krishna Anand,Pei Tong,Avneesh Gautam,Megan Mayer,Sophia Rits-Volloch,Shaowei Wang,Piotr Sliz,Duane R. Wesemann,Wei Yang,Michael S. Seaman,Jianming Lu,Tianshu Xiao,Bing Chen
标识
DOI:10.1101/2022.01.11.475922
摘要
Abstract The Omicron variant of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), bearing an unusually high number of mutations, has become a dominant strain in many countries within several weeks. We report here structural, functional and antigenic properties of its full-length spike (S) protein with a native sequence in comparison with those of previously prevalent variants. Omicron S requires a substantially higher level of host receptor ACE2 for efficient membrane fusion than other variants, possibly explaining its unexpected cellular tropism. Mutations not only remodel the antigenic structure of the N-terminal domain of the S protein, but also alter the surface of the receptor-binding domain in a way not seen in other variants, consistent with its remarkable resistance to neutralizing antibodies. These results suggest that Omicron S has acquired an extraordinary ability to evade host immunity by excessive mutations, which also compromise its fusogenic capability.
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