SARS-CoV-2–host cell surface interactions and potential antiviral therapies

Author:

Butnariu Aura-Bianca1,Look Alex1,Grillo Marta1,Tabish Tanveer A.2,McGarvey Michael J.3,Pranjol Md Zahidul I.1ORCID

Affiliation:

1. School of Life Sciences, University of Sussex, Falmer, UK

2. Faculty of Engineering, Department of Materials, Royal School of Mines, Imperial College London, London, UK

3. Department of Infectious Disease, Faculty of Medicine, Imperial College London, London, UK

Abstract

In this review, we reveal the latest developments at the interface between SARS-CoV-2 and the host cell surface. In particular, we evaluate the current and potential mechanisms of binding, fusion and the conformational changes of the spike (S) protein to host cell surface receptors, especially the human angiotensin-converting enzyme 2 (ACE2) receptor. For instance, upon the initial attachment, the receptor binding domain of the S protein forms primarily hydrogen bonds with the protease domain of ACE2 resulting in conformational changes within the secondary structure. These surface interactions are of paramount importance and have been therapeutically exploited for antiviral design, such as monoclonal antibodies. Additionally, we provide an insight into novel therapies that target viral non-structural proteins, such as viral RNA polymerase. An example of which is remdesivir which has now been approved for use in COVID-19 patients by the US Food and Drug Administration. Establishing further understanding of the molecular details at the cell surface will undoubtably aid the development of more efficacious and selectively targeted therapies to reduce the burden of COVID-19.

Funder

University of Sussex

Publisher

The Royal Society

Subject

Biomedical Engineering,Biomaterials,Biochemistry,Bioengineering,Biophysics,Biotechnology

Reference103 articles.

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