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Respiratory syncytial virus fusion glycoprotein (RSV F), prefusion conformation, subtype A (RSV pre-F (subtype A))

Target
RSV pre-F (subtype A)
Molecular classification
Viral surface glycoprotein, Class I viral fusion protein
01

Overview

The Respiratory syncytial virus (RSV) fusion (F) glycoprotein is a class I viral fusion protein that is essential for the virus to enter host cells by mediating the fusion of the viral envelope with the host cell membrane (McLellan et al., 2013, Science). The F protein is synthesized as an inactive precursor (F0) that is cleaved into F1 and F2 subunits, which then assemble into a metastable prefusion trimer (pre-F). Upon contact with a host cell, the pre-F protein undergoes a massive, irreversible conformational change into a stable postfusion (post-F) state, a process that drives the merger of viral and cellular membranes (Graham, 2017, Immunological Reviews). The prefusion conformation is the primary target for modern therapeutic development because it contains highly potent neutralizing epitopes, such as Site Ø and Site V, which are lost when the protein transitions to the postfusion state (Battles & McLellan, 2019, Nature Reviews Microbiology). Subtype A is one of the two major antigenic groups of RSV; while the F protein is highly conserved between subtypes A and B, subtype-specific variations can influence the binding affinity of certain monoclonal antibodies (Jones et al., 2023, NEJM). Current clinical interventions, including the monoclonal antibody nirsevimab and stabilized prefusion F vaccines like Arexvy and Abrysvo, specifically target this conformation to prevent severe lower respiratory tract disease in infants and older adults (Simoes et al., 2022, Lancet Child & Adolescent Health).

Other names
RSV F proteinPrefusion FRSV-FFusion glycoprotein F0RSV subtype A fusion protein
02

Mechanism of action

Neutralization of viral infectivity by binding to the prefusion conformation of the F protein, thereby preventing the structural rearrangement required for membrane fusion and viral entry into host cells.

03

Biological functions

Viral entryMembrane fusionHost cell attachment
04

Disease associations

Respiratory syncytial virus infectionBronchiolitisPneumonia
05

Safety considerations

Injection site reactionsHypersensitivityPotential for viral resistance
06

Interacting drugs

Nirsevimab

5 more in the full profile.

07

Biomarkers

RSV neutralizing antibody titersRSV viral load

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