Target intelligence / Profile preview

Spike glycoprotein (S) of SARS-CoV-2 (S protein)

Target
S protein
Molecular classification
Viral fusion protein, Class I viral fusion glycoprotein, Structural viral envelope protein
01

Overview

The Spike glycoprotein (S) is a large trimeric class I viral fusion protein found on the surface of coronaviruses, including SARS-CoV‑2. It is composed of two functional subunits per protomer—S1, which contains a receptor-binding domain responsible for attachment to host cell receptors such as angiotensin-converting enzyme 2 (ACE2), and S2, which mediates membrane fusion between virus and host cell membranes. The full-length mature S protein consists of approximately 1273 amino acids in SARS-CoV‑2. The trimeric structure protrudes from the virion surface forming characteristic “spikes,” giving coronaviruses their crown-like appearance under electron microscopy. The S glycoprotein is heavily glycosylated and undergoes significant conformational changes during virus entry. It is essential for infectivity, pathogenesis, tissue tropism determination, and serves as both a major antigenic determinant recognized by neutralizing antibodies during natural infection/vaccination—and thus is central to most COVID‑19 vaccine strategies—as well as a direct therapeutic target for monoclonal antibodies. Mutations within this gene are associated with altered transmissibility or immune escape properties among emerging variants.[1][3][4][5]

Other names
Spike proteinS proteinSARS-CoV-2 spike glycoproteinCoronavirus spike proteinE2 (historical)CoV_S1 (domain symbol)
02

Mechanism of action

Blockade of ACE2 binding to prevent virus attachment and entry[1][4] Inhibition of conformational changes required for membrane fusion[8] Induction of neutralizing antibodies that target key epitopes on the RBD or other regions to prevent infection/reduce severity[4]

03

Biological functions

Mediates viral entry into host cells by binding to the ACE2 receptor and facilitating membrane fusion[1][4][5]Determines host range and cell tropism[5]Major antigenic determinant for immune response, including neutralizing antibody generation[4][5]
04

Disease associations

Infection (COVID‑19, caused by SARS-CoV‑2)[4][5]
05

Safety considerations

Antigenic drift/mutation in the spike gene leading to immune escape variants (“variants of concern”)[8]Potential for vaccine-induced adverse events such as rare allergic reactions or myocarditis with some platforms (not specific to target but relevant in context)
06

Interacting drugs

Monoclonal antibodies targeting the spike RBD or other epitopes (e.g., casirivimab, imdevimab, sotrovimab)

2 more in the full profile.

07

Biomarkers

Anti-spike IgG/IgM antibody titers as markers of prior infection or vaccine response[4][5]Neutralizing antibody levels against spike/RBD as correlates of protection

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