Target intelligence / Profile preview

Alpha-2,3-linked sialylated glycan (α2,3-Sia)

Target
α2,3-Sia
Molecular classification
Glycan, Carbohydrate, Oligosaccharide, Cell surface receptor
01

Overview

Alpha-2,3-linked sialylated glycans are carbohydrate structures found on the terminal ends of glycoproteins and glycolipids on the host cell surface, where a sialic acid residue is attached to a galactose residue via an alpha-2,3-glycosidic bond (PubMed: 16439206). These glycans serve as critical attachment points for various pathogens, most notably avian influenza viruses, which preferentially bind to alpha-2,3-linkages found predominantly in the lower respiratory tract of humans and the intestinal tract of birds (NIH: PMC3180813). In addition to their role in viral entry, these glycans are involved in essential biological processes such as cell-cell recognition, inflammation, and the regulation of protein half-life (UniProt: P04053). In oncology, altered expression of alpha-2,3-sialylated structures, such as Sialyl-Lewis X, is often associated with increased metastatic potential and poor prognosis (PubMed: 22510521). Therapeutic strategies targeting these glycans include the use of sialidases to strip the receptors from the cell surface, thereby blocking viral infection, or the development of small molecule inhibitors that mimic these structures to competitively inhibit pathogen binding (PubMed: 19104077).

Other names
Neu5Ac-alpha-2,3-GalAlpha-2,3-sialic acidAvian influenza virus receptorSialyl-alpha-2,3-galactoseSA-alpha-2,3-Gal
02

Mechanism of action

Drugs targeting these glycans typically act by enzymatically removing the sialic acid residues from the cell surface (e.g., sialidases like DAS181) to prevent viral entry, or by inhibiting viral neuraminidase to prevent the release of new virions from the sialylated host cell surface (e.g., Oseltamivir).

03

Biological functions

Cell-cell adhesionCell signalingPathogen recognitionHost-pathogen interactionProtein stability
04

Disease associations

Infection (Avian Influenza)Cancer metastasisInflammationBacterial infection (e.g., Streptococcus pneumoniae)
05

Safety considerations

Off-target effects on endogenous sialic acid signalingPotential for respiratory irritation with inhaled sialidasesImpact on normal cell-cell adhesion and immune modulationRapid clearance of glycan-modifying agents
06

Interacting drugs

Oseltamivir

5 more in the full profile.

07

Biomarkers

Sialyl-Lewis X expressionMAL II (Maackia amurensis lectin II) bindingSialic acid serum levels

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