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N-acetylglucosaminyltransferase-V (GnT-V)-enriched small extracellular vesicles mediate N-glycan remodeling in recipient cells


ABSTRACT: Summary Small extracellular vesicles (sEVs) secreted from cancer cells play pivotal roles in cancer metastasis and malignancy by transferring biomolecules and conditioning future metastatic sites. Studies have elucidated structures and functions of glycans on sEVs; however, whether sEVs remodel glycans in recipient cells remains poorly understood. Here, we examined the enzyme activity of glycosyltransferases for complex N-glycan biosynthesis in cancer-derived sEVs and discovered that cancer-related glycosyltransferase, N-acetylglucosaminyltransferase-V (GnT-V, a.k.a. MGAT5), is selectively enriched in sEVs among various glycosyltransferases. GnT-V in sEVs is a cleaved form, and cleavage by SPPL3 protease is necessary for loading GnT-V in sEVs. Fractionation experiments and single-particle imaging further revealed that GnT-V was enriched in non-exosomal sEVs. Strikingly, we found that enzymatically active GnT-V in sEVs was transferred to recipient cells and the N-glycan structures of recipient cells were remodeled to express GnT-V-produced glycans. Our results suggest GnT-V-enriched sEVs’ role in glycan remodeling in cancer metastasis. Graphical abstract Highlights • A cancer-related glycosyltransferase, GnT-V, is specifically enriched in sEVs• Cleavage of GnT-V by SPPL3 is important for its enrichment into sEVs• GnT-V-enriched sEVs are distinct from classical exosomes with CD9, CD63, and CD81• GnT-V in sEVs is transferred to recipient cells, remodeling their N-glycans Biochemistry; Cell biology; Cancer

SUBMITTER: Hirata T 

PROVIDER: S-EPMC9794981 | biostudies-literature | 2022 Dec

REPOSITORIES: biostudies-literature

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