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Structural and biochemical mechanism for increased infectivity and immune evasion of Omicron BA.1 and BA.2 variants and their mouse origins
Youwei Xu; Canrong Wu; Xiaodan Cao; Chunyin Gu; Heng Liu; Mengting Jiang; Xiaoxi Wang; Qingning Yuan; Kai Wu; Jia Liu; Xianqing He; Deyi Wang; Xueping Wang; Su-Jun Deng; H. Eric Xu; Wanchao Yin.
Afiliação
  • Youwei Xu; Shanghai Institute of Materia Medica
  • Canrong Wu; Shanghai Institute of Materia Medica
  • Xiaodan Cao; Jemincare
  • Chunyin Gu; Shanghai Jemincare Pharmaceuticals Co., Ltd.
  • Heng Liu; Shanghai Institute of Materia Medica
  • Mengting Jiang; Shanghai Institute of Materia Medica
  • Xiaoxi Wang; Shanghai Institute of Materia Medica Chinese Academy of Sciences
  • Qingning Yuan; Shanghai Institute of Materia Medica
  • Kai Wu; Shanghai Institute of Materia Medica
  • Jia Liu; Shanghai Jemincare Pharmaceuticals Co., Ltd
  • Xianqing He; Shanghai Jemincare Pharmaceuticals Co., Ltd.,
  • Deyi Wang; Shanghai Jemincare Pharmaceuticals Co., Ltd.
  • Xueping Wang; Shanghai Jemincare Pharmaceuticals Co., Ltd.
  • Su-Jun Deng; Shanghai Jemincare Pharmaceuticals Co., Ltd
  • H. Eric Xu; Shanghai Institute of Materia Medica
  • Wanchao Yin; Shanghai Institute of Materia Medica
Preprint em Inglês | bioRxiv | ID: ppbiorxiv-488075
ABSTRACT
The Omicron BA.2 variant has become a dominant infective strain worldwide. Receptor binding studies reveal that the Omicron BA.2 spike trimer have 11-fold and 2-fold higher potency to human ACE2 than the spike trimer from the wildtype (WT) and Omicron BA.1 strains. The structure of the BA.2 spike trimer complexed with human ACE2 reveals that all three receptor-binding domains (RBDs) in the spike trimer are in open conformation, ready for ACE2 binding, thus providing a basis for the increased infectivity of the BA.2 strain. JMB2002, a therapeutic antibody that was shown to have efficient inhibition of Omicron BA.1, also shows potent neutralization activities against Omicron BA.2. In addition, both BA.1 and BA.2 spike trimers are able to bind to mouse ACE2 with high potency. In contrast, the WT spike trimer binds well to cat ACE2 but not to mouse ACE2. The structures of both BA.1 and BA.2 spike trimer bound to mouse ACE2 reveal the basis for their high affinity interactions. Together, these results suggest a possible evolution pathway for Omicron BA.1 and BA.2 variants from human-cat-mouse-human circle, which could have important implications in establishing an effective strategy in combating viral infection.
Licença
cc_by_nc_nd
Texto completo: Disponível Coleções: Preprints Base de dados: bioRxiv Idioma: Inglês Ano de publicação: 2022 Tipo de documento: Preprint
Texto completo: Disponível Coleções: Preprints Base de dados: bioRxiv Idioma: Inglês Ano de publicação: 2022 Tipo de documento: Preprint
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