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ST3 beta-galactoside alpha-2,3-sialyltransferase 2 (ST3GAL2)

Target
ST3GAL2
Molecular classification
Enzyme, Glycosyltransferase (specifically, sialyltransferase; GT29 family)
01

Overview

ST3 beta-galactoside alpha-2,3-sialyltransferase 2 (ST3GAL2) is a type II membrane-bound glycosyltransferase primarily located in the Golgi apparatus. It catalyzes the transfer of sialic acid from the donor substrate CMP-neuraminic acid to galactose-containing acceptors on glycoproteins and glycolipids, creating α2,3-glycosidic linkages. ST3GAL2 is essential for terminal sialylation of ganglio and globo series glycolipids (such as GD1a and GT1b), and it also modifies cell surface glycoproteins and glycolipids, impacting key antigens like SSEA4. The enzyme’s activity is critical for the composition of cell surface glycans that regulate cell migration, immune evasion, chemoresistance, and neuronal stability. Overexpression of ST3GAL2 has been linked to tumor progression, metastatic phenotype, and poor clinical prognosis, especially in kidney, breast, and brain cancers. No approved drugs currently target this enzyme, but it represents a potential therapeutic target due to its central role in cancer biology and neurological disease.

Other names
CMP-N-acetylneuraminate-beta-galactosamide-alpha-2,3-sialyltransferase 2SIAT4BAlpha 2,3-ST 2Beta-galactoside alpha-2,3-sialyltransferase 2ST3GalIIST3GALIIST3GalA.2Gal-NAc6SMonosialoganglioside sialyltransferaseSialyltransferase 4BGal-beta-1,3-GalNAc-alpha-2,3-sialyltransferase
02

Mechanism of action

If targeted, drugs would typically act as enzyme inhibitors to block glycan sialylation, potentially impacting cell surface antigenicity and cancer-related pathways. Modulation of immune recognition (via ganglioside sialylation, impacting Siglec signaling)

03

Biological functions

Transfer of sialic acid from CMP-sialic acid to galactose-containing substrates (glycoproteins and glycolipids)Synthesis of α2,3-sialylated structures, especially on mucin-type O-glycans and gangliosidesSialylation of pluripotent and cancer stem cell antigen SSEA3, producing SSEA4Regulation of cell surface glycan composition (impacting cell migration, immune evasion, and signaling)
04

Disease associations

Cancer (renal cell carcinoma, breast cancer, glioblastoma)Chemoresistance (specifically via SSEA4 expression in cancer stem cells)Neurological conditions (involved in biosynthesis of brain gangliosides GD1a and GT1b)Renal carcinogenesisFibrosarcomaEpithelioid sarcomaOther (possibly roles in hematopoiesis and platelet production)
05

Safety considerations

Interference with sialylation could disrupt normal cell signaling, cell-cell interactions, and immune recognition, potentially leading to hematopoietic, immunological, or neurological side effectsPotential for off-target effects due to overlapping substrate specificities among the ST3Gal enzyme family
06

Interacting drugs

No FDA-approved drugs currently directly target ST3GAL2

1 more in the full profile.

07

Biomarkers

SSEA4 antigen (used for stem cell and cancer stem cell detection via flow cytometry or immunostaining)Expression levels of ST3GAL2 mRNA (an indicator of tumor stage, poor prognosis in several cancers)

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