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Updated: Jan 31, 2026

Author Spotlight: Understanding Cytokine-Induced Cell Death in Intestinal Epithelial Cells Using Human Organoids
Published on: August 2, 2024
Death receptor 5 is activated by fucosylation in colon cancer cells
Baojie Zhang1, Ingrid A M van Roosmalen1, Carlos R Reis1
1Department of Chemical and Pharmaceutical Biology, Groningen Research Institute of Pharmacy, University of Groningen, The Netherlands.
Abstract:
The remarkable pro-apoptotic properties of tumour necrosis factor (TNF)-related apoptosis-inducing ligand (TRAIL) have led to considerable interest in this protein as a potential anticancer therapeutic. However, TRAIL is largely ineffective in inducing apoptosis in certain cancer cells, and the mechanisms underlying this selectivity are unknown. In colon adenocarcinomas, posttranslational modifications including O- and N- glycosylation of death receptors were found to correlate with TRAIL-induced apoptosis. Additionally, mRNA levels of fucosyltransferase 3 (FUT3) and 6 (FUT6) were found to be high in the TRAIL-sensitive colon adenocarcinoma cell line COLO 205. In this study, we use agonistic receptor-specific TRAIL variants to dissect the contribution of FUT3 and FUT6-mediated fucosylation to TRAIL-induced apoptosis via its two death receptors, DR4 and DR5. Triggering of apoptosis by TRAIL revealed that the low FUT3/6-expressing cells DLD-1 and HCT 116 are insensitive to DR5 but not to DR4-mediated apoptosis. By contrast, efficient apoptosis is mediated via both receptors in high FUT3/6-expressing COLO 205 cells. The reconstitution of FUT3/6 expression in DR5-resistant cells completely restored TRAIL sensitivity via this receptor, while only marginally enhancing apoptosis via DR4 at lower TRAIL concentrations. Interestingly, we observed that induction of the salvage pathway by external administration of l-fucose restores DR5-mediated apoptosis in both DLD-1 and HCT 116 cells. Finally, we show that fucosylation influences the ligand-independent receptor association that leads to increased death inducing signalling complex (DISC) formation and caspase-8 activation. Taken together, these results provide evidence for the differential impact of fucosylation on signalling via DR4 or DR5. These findings provide novel opportunities to enhance TRAIL sensitivity in colon adenocarcinoma cells that are highly resistant to DR5-mediated apoptosis.
Insights
Tumour necrosis factor (TNF)-related apoptosis-inducing ligand (TRAIL) sensitivity in colon cancer cells depends on fucosylation. Fucosyltransferases FUT3 and FUT6 impact TRAIL-induced apoptosis via DR4 and DR5 receptors, offering new therapeutic strategies.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Tumour necrosis factor (TNF)-related apoptosis-inducing ligand (TRAIL) is a promising anticancer therapeutic.
- TRAIL efficacy varies across cancer types, with mechanisms of resistance unclear.
- O- and N-glycosylation of death receptors correlate with TRAIL-induced apoptosis in colon adenocarcinomas.
Purpose of the Study:
- To investigate the role of fucosyltransferases FUT3 and FUT6 in TRAIL-induced apoptosis.
- To determine the differential impact of fucosylation on TRAIL death receptors DR4 and DR5.
- To explore strategies for overcoming TRAIL resistance in colon cancer.
Main Methods:
- Utilized agonistic receptor-specific TRAIL variants.
- Assessed TRAIL-induced apoptosis in colon cancer cell lines with varying FUT3/6 expression (COLO 205, DLD-1, HCT 116).
- Investigated the effect of l-fucose administration and FUT3/6 expression reconstitution.
Main Results:
- Colon cancer cells with low FUT3/6 expression were resistant to DR5-mediated TRAIL apoptosis but sensitive to DR4.
- High FUT3/6 expression enabled efficient apoptosis via both DR4 and DR5.
- Restoring FUT3/6 expression or administering l-fucose rescued DR5-mediated apoptosis in resistant cells.
- Fucosylation was shown to influence ligand-independent receptor association and DISC formation.
Conclusions:
- Fucosylation differentially impacts signalling through DR4 and DR5 death receptors.
- FUT3 and FUT6 expression are critical determinants of TRAIL sensitivity in colon cancer.
- Targeting fucosylation pathways presents a novel strategy to enhance TRAIL efficacy against resistant colon adenocarcinomas.
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