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Engineered Trimeric ACE2 Binds and Locks "Three-up" Spike Protein to Potently Inhibit SARS-CoVs and Mutants
Liang Guo; Wenwen Bi; Xinling Wang; Wei Xu; Renhong Yan; Yuanyuan Zhang; Kai Zhao; Yaning Li; Mingfeng Zhang; Xingyue Bao; Xia Cai; Yutang Li; Di Qu; Shibo Jiang; Youhua Xie; Qiang Zhou; Lu Lu; Bobo Dang.
Affiliation
  • Liang Guo; Westlake University
  • Wenwen Bi; Westlake University
  • Xinling Wang; Fudan University
  • Wei Xu; Fudan University
  • Renhong Yan; Westlake University
  • Yuanyuan Zhang; Westlake University
  • Kai Zhao; Westlake University
  • Yaning Li; Westlake University
  • Mingfeng Zhang; Westlake University
  • Xingyue Bao; Westlake University
  • Xia Cai; Fudan University
  • Yutang Li; Fudan University
  • Di Qu; Fudan University
  • Shibo Jiang; Fudan University
  • Youhua Xie; Fudan University
  • Qiang Zhou; Westlake University
  • Lu Lu; Fudan University
  • Bobo Dang; Westlake University
Preprint in English | bioRxiv | ID: ppbiorxiv-274704
ABSTRACT
SARS-CoV-2 enters cells via ACE-2, which binds the spike protein with moderate affinity. Despite a constant background mutational rate, the virus must retain binding with ACE2 for infectivity, providing a conserved constraint for SARS-CoV-2 inhibitors. To prevent mutational escape of SARS-CoV-2 and to prepare for future related coronavirus outbreaks, we engineered a de novo trimeric ACE2 (T-ACE2) protein scaffold that binds the trimeric spike protein with extremely high affinity (KD < 1 pM), while retaining ACE2 native sequence. T-ACE2 potently inhibits all tested pseudotyped viruses including SARS-CoV-2, SARS-CoV, eight naturally occurring SARS-CoV-2 mutants, two SARSr-CoVs as well as authentic SARS-CoV-2. The cryo-EM structure reveals that T-ACE2 can induce the transit of spike protein to "three-up" RBD conformation upon binding. T-ACE2 thus represents a promising class of broadly neutralizing proteins against SARS-CoVs and mutants.
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Full text: Available Collection: Preprints Database: bioRxiv Language: English Year: 2020 Document type: Preprint
Full text: Available Collection: Preprints Database: bioRxiv Language: English Year: 2020 Document type: Preprint
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