Target intelligence / Profile preview

Dengue virus serotype 3 envelope protein (E protein (DENV-3 E protein))

Target
E protein (DENV-3 E protein)
Molecular classification
Viral glycoprotein, Envelope protein, Receptor binding protein, Fusion protein, Flavivirus structural protein
01

Overview

The Dengue virus serotype 3 envelope protein is a 53kDa glycoprotein that forms homodimers on the viral surface, mediating initial attachment and entry into host cells. This protein consists of three domains: DI (central), DII (fusion domain), and DIII (receptor-binding domain)[4][7]. It is responsible for binding to host-cell receptors (such as DC-SIGN and heparan sulfate), facilitating fusion between the viral and endosomal membranes following acidification[4][9]. Domain III, which is immunoglobulin-like, contains serotype-specific epitopes and serves as the primary binding site for neutralizing antibodies and many vaccine candidates[2][5][7]. The protein is a major therapeutic target for dengue, but its high variability across strains and the phenomenon of antibody-dependent enhancement present key challenges for drug and vaccine development[1][4][8]. Genomic differences in the E gene are important for diagnosis and patient stratification, and the E protein is used as an antigen in serological assays and research on viral pathogenesis.

Other names
DENV-3 E proteinEnvelope glycoprotein (serotype 3)E glycoprotein (Dengue serotype 3)Dengue virus type 3 envelope protein
02

Mechanism of action

Inhibition of membrane fusion (prevents viral entry into host cells[1]) Blockade of receptor binding (prevents attachment to host cells[4]) Neutralization by binding to specific epitopes (serotype-specific or cross-reactive domains, notably on EDIII[5])

03

Biological functions

Viral attachment to host cellMediation of viral entry by membrane fusionReceptor bindingElicitation of neutralizing antibody response
04

Disease associations

Infection (Dengue fever, Dengue hemorrhagic fever)Antibody-dependent enhancement of disease
05

Safety considerations

Antibody-dependent enhancement: Antibodies against one DENV serotype may facilitate infection by another serotype when not fully neutralizing, especially via E protein epitopes[1]High genetic and antigenic variability: E protein has multiple polymorphic sites, presenting challenges for vaccine and antibody-based therapies[7][8]Cross-reactivity: Some antibodies bind but do not neutralize, potentially worsening disease[1][8]
06

Interacting drugs

Monoclonal antibodies (e.g., HMAb 5J7, which neutralizes DENV-3 by binding to the E protein[5])

2 more in the full profile.

07

Biomarkers

E protein gene sequence (used for molecular diagnostics and strain typing[4])E protein-specific antibodies (serological diagnosis of infection and immune response monitoring[7])Presence of amino acid substitutions in E protein (indicative of genotype and lineage, can guide therapeutic response[8])

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