Target intelligence / Profile preview

Influenza A virus hemagglutinin (H3) (HA (H3))

Target
HA (H3)
Molecular classification
Viral surface glycoprotein, Class I viral fusion protein, Lectin
01

Overview

The Influenza A virus hemagglutinin (H3) is a primary surface glycoprotein of the H3N2 subtype, essential for viral entry into host cells (UniProt: P03437). It functions as a trimeric protein that recognizes and binds to terminal alpha-2,6-linked sialic acids on host cell surface glycoproteins in the human respiratory tract, initiating receptor-mediated endocytosis (PubMed: 22301554). Following internalization, the acidic environment of the endosome triggers a massive conformational change in the HA molecule, leading to the fusion of the viral and endosomal membranes and the release of the viral genome into the cytoplasm (PubMed: 11061435). Due to its prominent position on the viral envelope, HA is the principal target for neutralizing antibodies and the primary component of seasonal influenza vaccines (CDC, 2023). However, the protein is subject to continuous antigenic drift, where mutations in the globular head domain allow the virus to escape pre-existing immunity, necessitating annual vaccine updates (PubMed: 29155429). Therapeutic interventions targeting HA include fusion inhibitors like umifenovir and various broadly neutralizing monoclonal antibodies currently in clinical development (PubMed: 30639431, PubMed: 27435445).

Other names
H3 hemagglutininHemagglutinin surface glycoproteinHA proteinH3N2 HAInfluenza A virus H3N2 hemagglutinin
02

Mechanism of action

Neutralization of viral infectivity by blocking the interaction between the hemagglutinin globular head and host sialic acid receptors, or by inhibiting the pH-dependent conformational rearrangement of the HA2 subunit required for membrane fusion (PMID: 30639431, PMID: 27435445).

03

Biological functions

Viral attachmentHost cell receptor bindingMembrane fusionHemagglutination
04

Disease associations

InfectionInfluenza ARespiratory tract infection
05

Safety considerations

Antigenic drift leading to immune evasionAntigenic shiftEgg-adaptive mutations in vaccine productionPotential for antibody-dependent enhancement
06

Interacting drugs

Umifenovir

6 more in the full profile.

07

Biomarkers

Hemagglutination inhibition (HAI) antibody titerMicroneutralization (MN) titerViral RNA load

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