EFNA5 — Ephrin A5
EFNA5 belongs to a gene co-expression module in 1 of 28 SCUBA cell types. Each module groups genes that rise and fall together in that cell type; the genes it shares a module with are its closest co-expression partners there.
EFNA5's module in each cell type
| Cell type | Module | Shares the module with | |
|---|---|---|---|
| Lymphatic endothelial | Lipid Metabolic Regulation Lipid metabolism | ANKS1A, CSGALNACT1, DYSF, KALRN, LDB2, MLLT10, PLD1, PPARG +5 more | View in SCUBA |
About the gene
| Synonyms | AF1, EPLG7, LERK7 |
|---|---|
| Chromosome | 5: 107376894-107670937 |
| Predicted location | Membrane |
| Essential gene | No |
| Protein class | Cancer-related genes, Predicted membrane proteins, RAS pathway related proteins |
| Molecular function | Developmental protein |
| Biological process | Differentiation, Neurogenesis |
Function
Cell surface GPI-bound ligand for Eph receptors, a family of receptor tyrosine kinases which are crucial for migration, repulsion and adhesion during neuronal, vascular and epithelial development. Binds promiscuously Eph receptors residing on adjacent cells, leading to contact-dependent bidirectional signaling into neighboring cells. The signaling pathway downstream of the receptor is referred to as forward signaling while the signaling pathway downstream of the ephrin ligand is referred to as reverse signaling. Induces compartmentalized signaling within a caveolae-like membrane microdomain when bound to the extracellular domain of its cognate receptor. This signaling event requires the activity of the Fyn tyrosine kinase. Activates the EPHA3 receptor to regulate cell-cell adhesion and cytoskeletal organization. With the receptor EPHA2 may regulate lens fiber cells shape and interactions and be important for lens transparency maintenance. May function actively to stimulate axon fasciculation. The interaction of EFNA5 with EPHA5 also mediates communication between pancreatic islet cells to regulate glucose-stimulated insulin secretion. Cognate/functional ligand for EPHA7, their interaction regulates brain development modulating cell-cell adhesion and repulsion
Human Protein Atlas · Open Targets · UniProt
Gene annotation from the Human Protein Atlas and UniProt; see sources & licences.