Your browser doesn't support javascript.
loading
Structural investigation of ACE2 dependent disassembly of the trimeric SARS-CoV-2 Spike glycoprotein
Dongchun Ni; Kelvin Lau; Frank Lehmann; Andri Fraenkli; David Hacker; Florence Pojer; Henning Stahlberg.
Affiliation
  • Dongchun Ni; University of Basel
  • Kelvin Lau; EPFL
  • Frank Lehmann; University of Basel
  • Andri Fraenkli; University of Basel
  • David Hacker; EPFL
  • Florence Pojer; EPFL
  • Henning Stahlberg; University of Basel
Preprint in En | PREPRINT-BIORXIV | ID: ppbiorxiv-336016
ABSTRACT
The human membrane protein Angiotensin-converting enzyme 2 (hACE2) acts as the main receptor for host cells invasion of the new coronavirus SARS-CoV-2. The viral surface glycoprotein Spike binds to hACE2, which triggers virus entry into cells. As of today, the role of hACE2 for virus fusion is not well understood. Blocking the transition of Spike from its prefusion to post-fusion state might be a strategy to prevent or treat COVID-19. Here we report a single particle cryo-electron microscopy analysis of SARS-CoV-2 trimeric Spike in presence of the human ACE2 ectodomain. The binding of purified hACE2 ectodomain to Spike induces the disassembly of the trimeric form of Spike and a structural rearrangement of its S1 domain to form a stable, monomeric complex with hACE2. This observed hACE2 dependent dissociation of the Spike trimer suggests a mechanism for the therapeutic role of recombinant soluble hACE2 for treatment of COVID-19.
License
cc_by_nc_nd
Full text: 1 Collection: 09-preprints Database: PREPRINT-BIORXIV Language: En Year: 2020 Document type: Preprint
Full text: 1 Collection: 09-preprints Database: PREPRINT-BIORXIV Language: En Year: 2020 Document type: Preprint