Related Experiment Video
Updated: Jan 20, 2026

Subculture and Cryopreservation of Esophageal Adenocarcinoma Organoids: Pros and Cons for Single Cell Digestion
Published on: July 6, 2022
AXL mediates TRAIL resistance in esophageal adenocarcinoma
1Department of Surgery, Vanderbilt University Medical Center, Nashville, TN 37232, USA.
Abstract:
The overexpression of AXL receptor tyrosine kinase is a frequent finding that has been associated with poor prognosis in esophageal adenocarcinoma (EAC). As the majority of EAC are intrinsically resistant to DNA-damaging therapies, an alternative therapeutic approach based on the activation of death receptors may be warranted. Tumor necrosis factor-related apoptosis-inducing ligand (TRAIL) has been evaluated in clinical trials and found promising as anticancer agent with mild side effects; unfortunately, resistance to TRAIL remains a major clinical problem. Herein, we explored the role of AXL in TRAIL resistance and elucidated the underlying mechanism. Overexpression of AXL in OE33 and OE19 cells promoted cell survival and attenuated TRAIL-induced cellular and molecular markers of apoptosis. In contrast, knockdown of endogenous AXL sensitized FLO-1 cells to TRAIL. The mechanism by which AXL regulates TRAIL resistance was examined. Protein and mRNA expression of DR4 and DR5 death receptors was not downregulated by AXL. In addition, the possible involvement of FLICE-inhibitory protein (FLIP) in regulating the interaction of caspase-8 with Fas-associated death domain protein (FADD) was excluded, as AXL did not enhance FLIP expression or FLIP/FADD association. Alternatively, protein association of AXL with DR5, independent of TRAIL, was confirmed, suggesting that AXL could regulate DR5 receptor activity. The AXL/DR5 association had no negative effect on TRAIL-induced interaction with FADD. However, the AXL/DR5 interaction blocked the recruitment of caspase-8 to the death-inducing signal complex (DISC). Collectively, our findings uncover a novel mechanism of TRAIL resistance mediated by AXL through regulation of the DISC and provide strong evidence that AXL could be exploited as a therapeutic target to circumvent TRAIL resistance.
Insights
AXL receptor tyrosine kinase overexpression drives resistance to TRAIL cancer therapy in esophageal adenocarcinoma. Targeting AXL may overcome this resistance by restoring apoptosis signaling pathways.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Esophageal adenocarcinoma (EAC) often shows poor prognosis linked to AXL receptor tyrosine kinase (RTK) overexpression.
- EAC exhibits intrinsic resistance to DNA-damaging therapies, necessitating alternative treatment strategies like death receptor activation.
- Tumor necrosis factor-related apoptosis-inducing ligand (TRAIL) shows promise as an anticancer agent but faces clinical resistance.
Purpose of the Study:
- To investigate the role of AXL in TRAIL resistance in esophageal adenocarcinoma.
- To elucidate the molecular mechanisms by which AXL influences TRAIL sensitivity and resistance.
Main Methods:
- Utilized OE33, OE19, and FLO-1 cell lines with varying AXL expression levels.
- Assessed cell survival and apoptosis markers in response to TRAIL treatment.
- Investigated protein and mRNA expression of death receptors (DR4, DR5) and FLICE-inhibitory protein (FLIP).
- Examined protein-protein interactions including AXL/DR5, FLIP/FADD, and caspase-8 recruitment to the death-inducing signal complex (DISC).
Main Results:
- AXL overexpression in OE33 and OE19 cells enhanced cell survival and reduced TRAIL-induced apoptosis.
- Knockdown of endogenous AXL in FLO-1 cells sensitized them to TRAIL.
- AXL did not affect DR4/DR5 or FLIP expression/association.
- AXL directly associated with DR5, independent of TRAIL.
- This AXL/DR5 association blocked caspase-8 recruitment to the DISC, inhibiting apoptosis initiation.
Conclusions:
- AXL confers TRAIL resistance in esophageal adenocarcinoma by disrupting DISC formation via interaction with DR5.
- AXL represents a novel therapeutic target to overcome TRAIL resistance in EAC.
- Targeting AXL could restore sensitivity to TRAIL-based therapies for improved patient outcomes.
Related Concept Videos
10:42Subculture and Cryopreservation of Esophageal Adenocarcinoma Organoids: Pros and Cons for Single Cell Digestion
06:46Simultaneous Laryngopharyngeal and Conventional Esophageal pH Monitoring
08:56Tissue-Engineered Graft for Circumferential Esophageal Reconstruction in Rats
08:07Traditional Trail Making Test Modified into Brand-new Assessment Tools: Digital and Walking Trail Making Test
12:16Production, Characterization and Potential Uses of a 3D Tissue-engineered Human Esophageal Mucosal Model
08:17VIGS-Mediated Forward Genetics Screening for Identification of Genes Involved in Nonhost Resistance
Virus-induced gene silencing is an useful tool for identifying genes involved in nonhost resistance of plants. We demonstrate the use of bacterial pathogens expressing GFPuv in identifying gene silenced plants susceptible to nonhost pathogens. This approach is easy, fast and facilitates large scale screening and similar protocol can be applied to studying various other plant-microbe...

