Your browser doesn't support javascript.
loading
Determinants and Mechanisms of the Low Fusogenicity and Endosomal Entry of Omicron Subvariants
Panke Qu; John P. Evans; Chaitanya Kurhade; Cong Zeng; Yi-Min Zheng; Kai Xu; Pei-Yong Shi; Xuping Xie; Shan-Lu Liu.
Affiliation
  • Panke Qu; The Ohio State University
  • John P. Evans; The Ohio State University
  • Chaitanya Kurhade; University of Texas Medical Branch
  • Cong Zeng; The Ohio State University
  • Yi-Min Zheng; The Ohio State University
  • Kai Xu; The Ohio State University
  • Pei-Yong Shi; University of Texas Medical Branch
  • Xuping Xie; University of Texas Medical Branch
  • Shan-Lu Liu; The Ohio State University
Preprint in English | bioRxiv | ID: ppbiorxiv-512322
ABSTRACT
The rapid spread and strong immune evasion of the SARS-CoV-2 Omicron subvariants has raised serious concerns for the global COVID-19 pandemic. These new variants exhibit reduced fusogenicity and increased endosomal entry pathway utilization compared to the ancestral D614G variant, the underlying mechanisms of which remain elusive. Here we show that the C-terminal S1 mutations of the BA.1.1 subvariant, H655Y and T547K, critically govern the low fusogenicity of Omicron. Notably, H655Y also dictates the enhanced endosome entry pathway utilization. Mechanistically, T547K and H655Y likely stabilize the spike trimer conformation, as shown by increased molecular interactions in structural modeling as well as reduced S1 shedding. Importantly, the H655Y mutation also determines the low fusogenicity and high dependence on the endosomal entry pathway of other Omicron subvariants, including BA.2, BA.2.12.1, BA.4/5 and BA.2.75. These results uncover mechanisms governing Omicron subvariant entry and provide insights into altered Omicron tissue tropism and pathogenesis.
License
cc_by_nc
Full text: Available Collection: Preprints Database: bioRxiv Language: English Year: 2022 Document type: Preprint
Full text: Available Collection: Preprints Database: bioRxiv Language: English Year: 2022 Document type: Preprint
...