Target intelligence / Profile preview

Spike glycoprotein of Middle East respiratory syndrome-related coronavirus (MERS-CoV S protein) (MERS-CoV S (Spike))

Target
MERS-CoV S (Spike)
Molecular classification
Viral fusion protein (class I), Viral structural protein, Receptor-binding viral protein
01

Overview

The spike glycoprotein of Middle East respiratory syndrome-related coronavirus (MERS-CoV) is a trimeric, heavily glycosylated class I viral fusion protein on the virion surface that mediates host-cell entry. Each protomer comprises an S1 subunit containing the N-terminal domain (NTD) and a C-terminal receptor-binding domain (RBD), and an S2 subunit containing the fusion peptide, heptad repeats (HR1, HR2), transmembrane domain, and cytoplasmic tail. The RBD specifically binds the host receptor CD26/dipeptidyl peptidase 4 (DPP4), enabling viral attachment and triggering conformational changes that, upon proteolytic activation at S1/S2 and S2′ sites, drive membrane fusion via a six-helix bundle formed by HR1 and HR2. The spike exhibits dynamic RBD conformations (“lying” and “standing”) that regulate receptor accessibility, and its dense N-linked glycans contribute to folding, receptor/attachment interactions (including sialosides via NTD), and immune evasion. Owing to its essential role in entry and surface exposure, the MERS-CoV spike is a central therapeutic and vaccine target for neutralizing antibodies, fusion-inhibitory peptides, and strategies that stabilize the prefusion conformation.

Other names
Spike protein of MERS-CoVS glycoproteinEnvelope spike proteinMERS-CoV spikeMERS spikeS1 subunitS2 subunitReceptor-binding domain (RBD) of MERS-CoV spikeN-terminal domain (NTD) of MERS-CoV spike
02

Mechanism of action

Neutralizing antibodies block RBD binding to CD26/DPP4 or lock prefusion conformations to prevent fusion; HR1/HR2-derived peptides disrupt six-helix bundle formation, preventing membrane fusion; Protease inhibitors prevent S1/S2 or S2′ cleavage, blocking activation for fusion

03

Biological functions

Viral attachment to host cells via receptor binding (CD26/DPP4)Mediates virus–cell membrane fusion and entryDetermines host range and tissue tropismEngages sialoside attachment factors through NTD interactionsElicits neutralizing antibody responses; major antigenic target
04

Disease associations

Infection (Middle East respiratory syndrome, MERS)
05

Safety considerations

Antigenic variability in RBD/NTD can lead to immune escape and reduce therapeutic antibody efficacyExtensive glycosylation can shield epitopes and impact vaccine/antibody bindingRequirement for protease activation creates cell-type variability in entry pathways, complicating translation of inhibitors across tissues
06

Interacting drugs

Monoclonal antibodies targeting the spike (e.g., RBD- or stem-directed nAbs; exemplar: G4 antibody in structural studies)

2 more in the full profile.

07

Biomarkers

Anti-spike neutralizing antibody titers as correlates of exposure/functional immunityViral genomic or subgenomic RNA with spike mutations affecting receptor binding or antigenicity (inferred from structural role of RBD/NTD)

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