IFITM proteins promote SARS-CoV-2 infection and are targets for virus inhibition

Author:

Bozzo Caterina Prelli1,Nchioua Rayhane1,Volcic Meta1ORCID,Krüger Jana2ORCID,Heller Sandra2ORCID,Stuerzel Christina1,Kmiec Dorota3ORCID,Conzelmann Carina1,Müller Janis4ORCID,Zech Fabian1,Schütz Desiree1,Koepke Lennart5ORCID,Braun Elisabeth4,Groß Rüdiger4ORCID,Wettstein Lukas6ORCID,Weil Tatjana6ORCID,Weiss Johanna1,Sauter Daniel4ORCID,Münch Jan2ORCID,Diofano Federica7,Goffinet Christine8ORCID,Catanese Alberto9,Schön Michael9,Boeckers Tobias2ORCID,Stenger Steffen10,Sato Kei11,Just Steffen12,Kleger Alexander2ORCID,Sparrer Konstantin6ORCID,Kirchhoff Frank4ORCID

Affiliation:

1. Institute of Molecular Virology Ulm, University Medical Centre, 89081 Ulm

2. University of Ulm

3. Department of Infectious Diseases, King’s College London, WC2R 2LS London

4. Ulm University Medical Center

5. Ulm University Medical Centre

6. Institute of Molecular Ulm, University Medical Centre, 89081 Ulm

7. Department of Internal Medicine II (Cardiology), Ulm University, 89081 Ulm

8. Charité - Universitätsmedizin Berlin

9. Institute for Anatomy and Cell Biology, Ulm University, 89081 Ulm

10. Institute of Medical Microbiology and Hygiene, Ulm University Medical Centre, 89081 Ulm

11. Laboratory of Systems Virology, Institute for Frontier Life and Medical Sciences, Kyoto University, Kyoto

12. University Hospital Ulm

Abstract

Abstract Interferon-induced transmembrane proteins (IFITMs 1, 2 and 3) are thought to restrict numerous viral pathogens including severe acute respiratory syndrome coronaviruses (SARS-CoVs). However, most evidence comes from single-round pseudovirus infection studies of cells that overexpress IFITMs. Here, we verified that artificial overexpression of IFITMs blocks SARS-CoV-2 infection. Strikingly, however, endogenous IFITM expression was essential for efficient infection of genuine SARS-CoV-2 in human lung cells. Our results indicate that the SARS-CoV-2 Spike protein interacts with IFITMs and hijacks them for efficient viral entry. IFITM proteins were expressed and further induced by interferons in human lung, gut, heart and brain cells. Intriguingly, IFITM-derived peptides and targeting antibodies inhibited SARS-CoV-2 entry and replication in human lung cells, cardiomyocytes and gut organoids. Our results show that IFITM proteins are important cofactors for SARS-CoV-2 infection of human cell types representing in vivo targets for viral transmission, dissemination and pathogenesis and suitable targets for therapeutic approaches.

Publisher

Research Square Platform LLC

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