The role of galectin-4 in physiology and diseases

Роль галектина-4 в физиологии и заболеваниях
Zhan‐Qi Cao, Xiuli Guo
2016-03-26

apical protein traffickingcarbohydrate-recognition domainsgalectin-4intestinal inflammationlipid raft stabilization
Galectin-4, a tandem repeat member of the β-galactoside-binding proteins, possesses two carbohydrate-recognition domains (CRD) in a single peptide chain. This lectin is mostly expressed in epithelial cells of the intestinal tract and secreted to the extracellular. The two domains have 40% similarity in amino acid sequence, but distinctly binding to various ligands. Just because the two domains bind to different ligands simultaneously, galectin-4 can be a crosslinker and crucial regulator in a large number of biological processes. Recent evidence shows that galectin-4 plays an important role in lipid raft stabilization, protein apical trafficking, cell adhesion, wound healing, intestinal inflammation, tumor progression, etc. This article reviews the physiological and pathological features of galectin-4 and its important role in such processes.
1
Galectin-4 contributes to lipid-raft stabilization, apical protein trafficking, cell adhesion, and wound healing.
2
Galectin-4 is a tandem-repeat β-galactoside-binding lectin containing two carbohydrate-recognition domains within one peptide chain.
3
Galectin-4 is implicated in intestinal inflammation and tumor progression, linking its physiological functions to disease processes.
4
Galectin-4 is predominantly expressed by intestinal epithelial cells and secreted extracellularly, supporting roles beyond intracellular localization.
5
The two galectin-4 domains share 40% amino-acid similarity but bind distinct ligands, enabling simultaneous ligand engagement and molecular crosslinking.

Galectin-4 in intestinal epithelial cells and the extracellular environment

The physiological and pathological roles and mechanisms of galectin-4, including lipid raft stabilization, apical protein trafficking, cell adhesion, wound healing, intestinal inflammation, and tumor progression

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2016-03-26
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Zhan‐Qi Cao
Xiuli Guo
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