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Poly-N-acetyllactosamine epitope on basigin (CD147) and CD98 (No widely accepted single abbreviation exists for this glycan+protein epitope. Related abbreviations include CD147 for basigin/EMMPRIN, CD98 for SLC3A2, and sometimes poly-N-acetyllactosamine is abbreviated as polyLacNAc.)

Target
No widely accepted single abbreviation exists for this glycan+protein epitope. Related abbreviations include CD147 for basigin/EMMPRIN, CD98 for SLC3A2, and sometimes poly-N-acetyllactosamine is abbreviated as polyLacNAc.
Molecular classification
Glycan modification (poly-N-acetyllactosamine), Transmembrane glycoprotein (CD147/basigin/EMMPRIN), Ig superfamily member (CD147), Amino acid transporter-associated protein (CD98), Accessory protein for nutrient transporters (CD147/CD98), “Transporter chaperone,” “matrix metalloproteinase inducer” (CD147-specific roles), Other
01

Overview

Poly-N-acetyllactosamine is a linear or branched glycan (carbohydrate) chain modification consisting of repeating N-acetyllactosamine (LacNAc, Galβ1-4GlcNAcβ1-3) units. On cell surface glycoproteins, especially basigin (CD147) and CD98, it is produced by the branching actions of glycosyltransferases such as GnT-V. Highly branched, poly-N-acetyllactosamine-rich forms of CD147 are prevalent on tumor cells and are associated with enhanced protein stability, membrane trafficking, and protein-protein interactions crucial for tumor progression, metabolic adaptation, and immune cell interaction. CD147 interacts closely with monocarboxylate transporters and CD98, forming complexes necessary for nutrient and metabolite transport, immune regulation, and signal transduction. The presence and abundance of poly-N-acetyllactosamine epitopes on CD147 (and potentially CD98) are key determinants for cellular function and represent validated therapeutic targets and biomarkers, especially in oncology.

Other names
Poly-N-acetyllactosamine (polyLacNAc) epitopeβ1,6-branched polylactosamine on CD147EMMPRIN (for CD147)Basigin (for CD147)SLC3A2 (for CD98)
02

Mechanism of action

Antibody blockade: Anti-CD147 antibodies can inhibit MMP induction, tumor invasion, or virus entry by blocking protein interactions or masking glycan-dependent epitopes. Transporter inhibition: Disruption of the CD147/MCT or CD98/amino acid transporter complex impedes metabolic adaptation of tumor cells. Glycosylation modulation: Inhibitors of glycosyltransferases (e.g., GnT-V inhibitors) could reduce poly-N-acetyllactosamine epitopes, potentially impacting the function and stability of CD147 or CD98.

03

Biological functions

Cell surface protein stability and trafficking (regulated by glycosylation)Induction of matrix metalloproteinase (MMP) secretion and extracellular matrix remodelingRegulation of monocarboxylate transporter (MCT) localization and function (lactate transport)Immune cell signaling and adhesion (influences leukocyte migration via E-selectin binding)Modulator of T regulatory cell stability (with CD98)Nutrient transport (CD98, via amino acid transporters)Cell-cell interaction, cytoskeletal remodeling, cellular metabolismReceptor/cofactor for viral infection (e.g., CHIKV, malaria PfRH5 protein)
04

Disease associations

Cancer: Highly glycosylated (poly-N-acetyllactosamine-rich) CD147 is overexpressed and functionally important in many tumors; it promotes tumor invasion, angiogenesis, and metabolic reprogrammingInflammation: Involved in leukocyte migration and organ inflammation via glycan-recognizing interactionsInfection: CD147 is used as an entry point by malaria parasites and some virusesOther: Visual function, spermatogenesis, immune modulation
05

Safety considerations

CD147 and CD98 have broad tissue expression and significant physiological roles (e.g., in vision, immune function, nutrient transport)Systemic targeting might disrupt normal tissue function. Glycan modifications are less tissue-specific, so off-tumor toxicity or interference with normal cell function is a potential challenge.
06

Interacting drugs

No small-molecule drugs directly target the glycan epitope; however, therapeutic anti-CD147 antibodies, such as metuximab (used in hepatocellular carcinoma in China), indirectly target glycoforms of CD147.

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07

Biomarkers

Highly glycosylated CD147 (poly-N-acetyllactosamine-rich) is used as a cancer biomarker, correlating with invasiveness, poor prognosis, and metabolic reprogrammingExpression of CD147, CD98, or poly-N-acetyllactosamine epitopes can serve as biomarkers for selection or stratification in clinical studies, especially in oncology.

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