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Structures of the Omicron Spike trimer with ACE2 and an anti-Omicron antibody
Wanchao Yin; Youwei Xu; Peiyu Xu; Xiaodan Cao; Canrong Wu; Chunyin Gu; Xinheng He; Xiaoxi Wang; Sijie Huang; Qingning Yuan; Kai Wu; Wen Hu; Zifu Huang; Jia Liu; Zongda Wang; Fangfang Jia; Kaiwen Xia; Peipei Liu; Xueping Wang; Bin Song; Jie Zheng; Hualiang Jiang; Xi Cheng; Yi Jiang; Su-Jun Deng; H. Eric Xu.
Afiliação
  • Wanchao Yin; Shanghai Institute of Materia Medica
  • Youwei Xu; Shanghai Institute of Materia Medica
  • Peiyu Xu; Shanghai Institute of Materia Medica
  • Xiaodan Cao; Jemincare
  • Canrong Wu; Shanghai
  • Chunyin Gu; Shanghai Jemincare Pharmaceuticals Co., Ltd.
  • Xinheng He; Shanghai Institute of Materia Medica
  • Xiaoxi Wang; Shanghai Institute of Materia Medica Chinese Academy of Sciences
  • Sijie Huang; Shanghai Institute of Materia Medica
  • Qingning Yuan; The Shanghai Advanced Electron Microscope Center
  • Kai Wu; The Shanghai Advanced Electron Microscope Center
  • Wen Hu; The Shanghai Advanced Electron Microscope Center
  • Zifu Huang; Shanghai Institute of Materia Medica
  • Jia Liu; Shanghai Jemincare Pharmaceuticals Co., Ltd.
  • Zongda Wang; Shanghai Jemincare Pharmaceuticals Co., Ltd.
  • Fangfang Jia; Shanghai Jemincare Pharmaceuticals Co., Ltd.
  • Kaiwen Xia; Shanghai Jemincare Pharmaceuticals Co., Ltd.
  • Peipei Liu; Shanghai Jemincare Pharmaceuticals Co., Ltd.
  • Xueping Wang; Shanghai Jemincare Pharmaceuticals Co., Ltd.
  • Bin Song; Immunological Disease Research Center
  • Jie Zheng; Immunological Disease Research Center
  • Hualiang Jiang; Shanghai Institute of Materia Medica
  • Xi Cheng; Shanghai Institute of Materia Medica
  • Yi Jiang; Shanghai Institute of Materia Medica Chinese Academy of Sciences
  • Su-Jun Deng; Shanghai Jemincare Pharmaceuticals Co., Ltd.
  • H. Eric Xu; Shanghai Institute of Materia Medica
Preprint em Inglês | bioRxiv | ID: ppbiorxiv-474273
Artigo de periódico
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ABSTRACT
The Omicron variant of SARS-CoV-2 has rapidly become the dominant infective strain and the focus efforts against the ongoing COVID-19 pandemic. Here we report an extensive set of structures of the Omicron spike trimer by its own or in complex with ACE2 and an anti-Omicron antibody. These structures reveal that most Omicron mutations are located on the surface of the spike protein, which confer stronger ACE2 binding by nearly 10 folds but become inactive epitopes resistant to many therapeutic antibodies. Importantly, both RBD and the closed conformation of the Omicron spike trimer are thermodynamically unstable, with the melting temperature of the Omicron RBD decreased by as much as 7{degrees}C, making the spiker trimer prone to random open conformations. An unusual RBD-RBD interaction in the ACE2-spike complex unique to Omicron is observed to support the open conformation and ACE2 binding, serving the basis for the higher infectivity of Omicron. A broad-spectrum therapeutic antibody JMB2002, which has completed Phase 1 clinical trial, is found to interact with the same two RBDs to inhibit ACE2 binding, in a mode that is distinguished from all previous antibodies, thus providing the structural basis for the potent inhibition of Omicron by this antibody. Together with biochemical data, our structures provide crucial insights into higher infectivity, antibody evasion and inhibition of Omicron.
Licença
cc_by_nc
Texto completo: Disponível Coleções: Preprints Base de dados: bioRxiv Tipo de estudo: Estudo prognóstico / Rct Idioma: Inglês Ano de publicação: 2021 Tipo de documento: Preprint
Texto completo: Disponível Coleções: Preprints Base de dados: bioRxiv Tipo de estudo: Estudo prognóstico / Rct Idioma: Inglês Ano de publicação: 2021 Tipo de documento: Preprint
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