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SARS-CoV-2 Omicron entry is type II transmembrane serine protease-mediated in human airway and intestinal organoid models

  • Netherlands Institute for Developmental Biology
  • Duke-NUS Graduate Medical School

Research output: Contribution to journalArticleAcademicpeer-review

47 Citations (Scopus)

Abstract

SARS-CoV-2 can enter cells after its spike protein is cleaved by either type II transmembrane serine proteases (TTSPs), like TMPRSS2, or cathepsins. It is now widely accepted that the Omicron variant uses TMPRSS2 less efficiently and instead enters cells via cathepsins, but these findings have yet to be verified in more relevant cell models. Although we could confirm efficient cathepsin-mediated entry for Omicron in a monkey kidney cell line, experiments with protease inhibitors showed that Omicron (BA.1 and XBB1.5) did not use cathepsins for entry into human airway organoids and instead utilized TTSPs. Likewise, CRISPR-edited intestinal organoids showed that entry of Omicron BA.1 relied on the expression of the serine protease TMPRSS2 but not cathepsin L or B. Together, these data force us to rethink the concept that Omicron has adapted to cathepsin-mediated entry and indicate that TTSP inhibitors should not be dismissed as prophylactic or therapeutic antiviral strategy against SARS-CoV-2.

Original languageEnglish
Article numbere0085123
JournalJournal of Virology
Volume97
Issue number8
DOIs
Publication statusPublished - 31 Aug 2023

Bibliographical note

Funding Information:
This work was supported by Netherlands Organization for Health Research and Development (10150062010008; B.L.H.), PPP allowance (LSHM19136; B.L.H.). This project has received funding from the European Union’s Horizon 2020 research and innovation program under grant agreement No 874735 (VEO). This manuscript was part of the research program of the Netherlands Centre for One Health (NCOH).

Publisher Copyright:
Copyright © 2023 American Society for Microbiology. All Rights Reserved.

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