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Zaire ebolavirus glycoprotein 1,2 (GP1,2) ectodomain, beta17-beta18 loop region (EBOV GP1,2 beta17-beta18 loop)

Target
EBOV GP1,2 beta17-beta18 loop
Molecular classification
Viral surface glycoprotein, Class I viral fusion protein, Other
01

Overview

The Zaire ebolavirus GP1,2 ectodomain – beta17–beta18 loop region is a critical structural component of the Ebola virus surface glycoprotein (GP), which is the sole protein responsible for viral attachment, endosomal entry, and membrane fusion [1, 16]. This loop, located within the glycan cap of the GP1 subunit, acts as a gatekeeper by occupying a highly conserved hydrophobic pocket, known as the 3_10 pocket, at the base of the GP1–GP2 interface in the prefusion state [2, 7]. This region is a major site of vulnerability for broadly neutralizing antibodies (bNAbs) because the residues within the pocket and the loop are highly conserved across different ebolavirus species [2, 15]. Drugs targeting this region, such as the experimental monoclonal antibodies ADI-15946, EBOV-520, and EBOV-515, work by displacing or mimicking the beta17–beta18 loop to bind the underlying 3_10 pocket [2, 7, 14]. This binding locks the glycoprotein in its prefusion conformation, effectively preventing the conformational changes required for fusion with the host endosomal membrane [7, 11]. Because this epitope is often shielded by the glycan cap and the loop itself in the native trimer, it represents a cryptic target that becomes more accessible after proteolytic processing by host cathepsins [2, 7]. Targeting this specific loop region is a key strategy for developing pan-ebolavirus therapeutics capable of providing broad protection against multiple strains of the virus [2, 15].

Other names
3_10 pocketGP1-GP2 base epitopebeta17-beta18 loopGlycoprotein base regionGP1-GP2 interface base
02

Mechanism of action

Neutralization of viral entry by binding to the conserved 3_10 pocket and displacing the beta17-beta18 loop, thereby preventing the conformational transitions necessary for membrane fusion.

03

Biological functions

Viral entryMembrane fusionHost cell attachmentReceptor binding
04

Disease associations

Ebola virus diseaseInfection
05

Safety considerations

Viral escape mutationsAntibody-dependent enhancement (ADE)Infusion-related reactionsEpitope shielding by the glycan cap
06

Interacting drugs

ADI-15946

3 more in the full profile.

07

Biomarkers

Ebolavirus RNAGP-specific antibody titers

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