Target intelligence / Profile preview

Junctional adhesion molecule A (JAM-A) and sialic acid (JAM-A; SA (for Sialic Acid))

Target
JAM-A; SA (for Sialic Acid)
Molecular classification
Receptor, immunoglobulin superfamily, cell adhesion molecule, Glycan, carbohydrate, cell-surface sugar
01

Overview

Junctional adhesion molecule A (JAM-A) is a transmembrane cell surface protein belonging to the immunoglobulin superfamily, localized at tight junctions in epithelial and endothelial cells, and plays a critical role in cell-cell adhesion, permeability barrier formation, and signaling. It serves as a receptor for several viruses (e.g., reovirus), modulates leukocyte transmigration, and orchestrates intracellular signaling through interactions with scaffolding proteins. Sialic acid refers to a diverse family of terminal acidic sugars present on glycoproteins and glycolipids on the cell surface; it functions as a primary point of contact for many viral pathogens by serving as a co-receptor that enhances viral binding to primary proteinaceous receptors such as JAM-A. Viral entry, particularly by reovirus, is a multistep process requiring initial low-affinity binding to α-linked sialic acid, which stabilizes subsequent high-affinity engagement of JAM-A, triggering internalization[2][4][6][8]. Both molecules play vital roles in disease progression, cell migration, infection, and are studied both as potential therapeutic targets and as biomarkers for disease states.

Other names
CD321JAM-1F11 receptorjunctional adhesion molecule 1N-acetylneuraminic acid (Neu5Ac)Siasterminal sialic acidsSA
02

Mechanism of action

Viruses (e.g., reovirus) use their attachment proteins (such as σ1) to first bind sialic acid on the host surface and then engage JAM-A to facilitate cell entry and infection. JAM-A modulates signaling by recruiting scaffolding proteins (Afadin, PDZ-GEF2) that activate Rap1 GTPase, leading to changes in cell adhesion and migration.

03

Biological functions

Cell adhesionRegulation of epithelial/endothelial junctions and barrier functionCell migrationSignal transduction via scaffolding proteins and PDZ-domain interactionsModulation of immune cell transmigrationModulation of cell-cell and cell-matrix interactionsReceptor/co-receptor for pathogens (including viruses)Immune response modulation
04

Disease associations

Infections (virus entry site)Cancer (altered barrier functions, tumor microenvironment, cell migration influencing metastasis)Inflammation (regulates leukocyte transmigration)Cardiovascular disease (endothelial permeability, neovascularization)Infection (viral attachment/co-receptor, e.g., influenza, reovirus)Cancer (altered cell-surface glycosylation facilitates immune evasion, cell migration)
05

Safety considerations

Targeting cell adhesion molecules like JAM-A may disrupt normal tissue barrier function, potentially leading to increased tissue permeability or inflammationTherapeutic targeting of sialic acid may affect normal immune interactions and responses due to its widespread presence on cell surfaces
06

Interacting drugs

No approved drugs specifically targeting JAM-A or sialic acid directly in the clinic, but several research agents and viral therapeutics modulate their function

1 more in the full profile.

07

Biomarkers

JAM-A expression levels may be used in research for assessing epithelial/endothelial barrier status, inflammation, or cancer cell migration potentialAltered sialic acid patterns (hypersialylation) are markers of transformed (cancer) cells and may indicate susceptibility to certain virus-based oncolytic therapies

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