Strategies to target SARS-CoV-2 entry and infection using dual mechanisms of inhibition by acidification inhibitors

Author:

Prabhakara ChaitraORCID,Godbole Rashmi,Sil ParijatORCID,Jahnavi SowmyaORCID,Gulzar Shah-e-JahanORCID,van Zanten Thomas S.ORCID,Sheth DhruvORCID,Subhash NeerajaORCID,Chandra AnchalORCID,Shivaraj AkshathaORCID,Panikulam PatriciaORCID,U IbrahimORCID,Nuthakki Vijay KumarORCID,Puthiyapurayil Theja Parassini,Ahmed Riyaz,Najar Ashaq Hussain,Lingamallu Sai ManozORCID,Das SnigdhadevORCID,Mahajan Bhagyashri,Vemula Praveen,Bharate Sandip B.ORCID,Singh Parvinder Pal,Vishwakarma RamORCID,Guha Arjun,Sundaramurthy VaradharajanORCID,Mayor SatyajitORCID

Abstract

Many viruses utilize the host endo-lysosomal network for infection. Tracing the endocytic itinerary of SARS-CoV-2 can provide insights into viral trafficking and aid in designing new therapeutic strategies. Here, we demonstrate that the receptor binding domain (RBD) of SARS-CoV-2 spike protein is internalized via the pH-dependent CLIC/GEEC (CG) endocytic pathway in human gastric-adenocarcinoma (AGS) cells expressing undetectable levels of ACE2. Ectopic expression of ACE2 (AGS-ACE2) results in RBD traffic via both CG and clathrin-mediated endocytosis. Endosomal acidification inhibitors like BafilomycinA1 and NH4Cl, which inhibit the CG pathway, reduce the uptake of RBD and impede Spike-pseudoviral infection in both AGS and AGS-ACE2 cells. The inhibition by BafilomycinA1 was found to be distinct from Chloroquine which neither affects RBD uptake nor alters endosomal pH, yet attenuates Spike-pseudovirus entry. By screening a subset of FDA-approved inhibitors for functionality similar to BafilomycinA1, we identified Niclosamide as a SARS-CoV-2 entry inhibitor. Further validation using a clinical isolate of SARS-CoV-2 in AGS-ACE2 and Vero cells confirmed its antiviral effect. We propose that Niclosamide, and other drugs which neutralize endosomal pH as well as inhibit the endocytic uptake, could provide broader applicability in subverting infection of viruses entering host cells via a pH-dependent endocytic pathway.

Funder

national centre for biological sciences

university grants commission

national center for biological sciences

European Molecular Biology Organization

The Wellcome Trust DBT India Alliance

department of atomic energy, government of india

Department of Science and Technology, Ministry of Science and Technology

the wellcome trust dbt india alliance

Publisher

Public Library of Science (PLoS)

Subject

Virology,Genetics,Molecular Biology,Immunology,Microbiology,Parasitology

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