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Published on: June 17, 2014
Regulation of TRAIL receptor expression by β-catenin in colorectal tumours
M Jalving1, D M Heijink, J J Koornstra
1Departments of Medical Oncology and.
Abstract:
Tumour-necrosis-factor-related apoptosis-inducing ligand (TRAIL) is being investigated as a targeted cancer therapeutic and the expression of its pro-apoptotic receptors, DR4 and DR5, increases during colorectal carcinogenesis. This study investigated the role of β-catenin in the regulation of these receptors. In human colorectal adenoma and carcinoma cell lines, downregulation of β-catenin resulted in lower total DR4 and DR5 protein levels. Similarly, cell membrane expression of DR4 and DR5 was reduced after downregulation of β-catenin in colon carcinoma cells, whereas induction of β-catenin in HeLa cells led to increased cell membrane expression of DR4 and DR5. Downregulation of β-catenin decreased the recombinant human TRAIL sensitivity of human colon carcinoma cells. Activation of the transcription factor T-cell factor-4 (TCF-4) is an important function of β-catenin. Dominant-negative TCF-4 overexpression, however, did not significantly affect TRAIL receptor expression or recombinant human TRAIL sensitivity. Human colorectal adenomas (N = 158) with aberrant (cytoplasmic and nuclear) β-catenin expression had a higher percentage of immunohistochemical DR4 and DR5 staining per tumour (mean: 73 and 88%, respectively) than those with membranous β-catenin staining only (mean: 50 and 70%, respectively, P < 0.01 for both). Furthermore, aberrant β-catenin staining co-localized with DR4 and DR5 expression in 92% of adenomas. In 53 human colorectal carcinomas, aberrant β-catenin expression was present in most cases and DR4/5 expression was largely homogenous. Similarly, in adenomas from APC(min) mice, cytoplasmic β-catenin staining co-localized with staining for the murine TRAIL death receptor. In conclusion, the gradual increase in TRAIL receptor expression during colorectal carcinogenesis is at least partially mediated through increased β-catenin expression, independently of TCF-4-signalling.
Insights
Tumour-necrosis-factor-related apoptosis-inducing ligand (TRAIL) receptor expression increases in colorectal cancer. This study shows that increased β-catenin levels drive TRAIL receptor expression, impacting cancer cell sensitivity to TRAIL therapy.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Tumour-necrosis-factor-related apoptosis-inducing ligand (TRAIL) is a potential cancer therapeutic.
- Expression of TRAIL receptors DR4 and DR5 increases during colorectal carcinogenesis.
- The role of β-catenin in regulating these receptors is not fully understood.
Purpose of the Study:
- To investigate the role of β-catenin in the regulation of TRAIL receptors DR4 and DR5.
- To determine if β-catenin influences colorectal cancer cell sensitivity to TRAIL.
- To explore the relationship between β-catenin and TRAIL receptor expression in human colorectal tumors.
Main Methods:
- Utilized human colorectal adenoma and carcinoma cell lines.
- Manipulated β-catenin levels through downregulation and induction.
- Performed immunohistochemical staining on human colorectal adenomas and carcinomas, and mouse adenomas.
- Assessed recombinant human TRAIL sensitivity in colon carcinoma cells.
Main Results:
- Downregulation of β-catenin reduced total and cell membrane levels of DR4 and DR5.
- β-catenin induction increased cell membrane expression of DR4 and DR5.
- Reduced β-catenin decreased TRAIL sensitivity in colon cancer cells.
- Aberrant β-catenin expression in human colorectal adenomas correlated with higher DR4 and DR5 staining and co-localized with these receptors.
Conclusions:
- Increased β-catenin expression contributes to the upregulation of TRAIL receptors DR4 and DR5 during colorectal carcinogenesis.
- This upregulation appears to be independent of TCF-4 signaling.
- β-catenin modulation of TRAIL receptor expression may influence colorectal cancer cell sensitivity to TRAIL-based therapies.
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