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Updated: Jun 12, 2026

Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
Crosstalk of EDA-A2/XEDAR in the p53 signaling pathway
Chizu Tanikawa1, Cui Ri, Vinod Kumar
1Laboratory of Molecular Medicine, Institute of Medical Science, The University of Tokyo, 4-6-1, Shirokanedai, Minato, Tokyo 1088639, Japan.
Abstract:
We recently identified X-linked ectodermal dysplasia receptor (XEDAR, also known as TNFRSF27 or EDA2R) as a direct p53 target that was frequently downregulated in colorectal cancer tissues due to its epigenetic alterations or through the p53 gene mutations. However, the role of the posttranslational regulation of XEDAR protein in colorectal carcinogenesis was not well clarified thus far. Here, we report that the extracellular NH(2) terminus of XEDAR protein was cleaved by a metalloproteinase and released into culture media. The remaining COOH-terminal membrane-anchored fragment was rapidly degraded through the ubiquitin-proteasome pathway. Interestingly, ectopic p53 expression also transactivated an XEDAR ligand, EDA-A2, together with XEDAR. Moreover, EDA-A2 blocked the cleavage of XEDAR and subsequently inhibited cell growth. We also found a missense mutation of the XEDAR gene in NCI-H716 colorectal cancer cells, which caused the translocation of XEDAR protein from cell membrane to cytoplasm. This mutation attenuated the growth-suppressive effect of XEDAR, indicating that membrane localization is critical for physiologic XEDAR function. Thus, our findings clearly revealed the crucial role of EDA-A2/XEDAR interaction in the p53-signaling pathway.
Insights
The X-linked ectodermal dysplasia receptor (XEDAR) is regulated by p53 signaling in colorectal cancer. Its interaction with EDA-A2 and membrane localization are crucial for tumor suppression.
Area of Science:
- Molecular Biology
- Cancer Research
- Cell Biology
Background:
- X-linked ectodermal dysplasia receptor (XEDAR) is a p53 target frequently downregulated in colorectal cancer.
- The posttranslational regulation of XEDAR in colorectal carcinogenesis remains unclear.
Purpose of the Study:
- To elucidate the posttranslational modifications and functional significance of XEDAR in colorectal cancer.
- To investigate the role of EDA-A2 and p53 in regulating XEDAR function.
Main Methods:
- Analysis of XEDAR protein cleavage and degradation pathways.
- Investigation of EDA-A2 expression and its effect on XEDAR.
- Characterization of XEDAR mutations in colorectal cancer cells.
Main Results:
- XEDAR undergoes extracellular cleavage and subsequent degradation via the ubiquitin-proteasome pathway.
- p53 transactivates EDA-A2, which inhibits XEDAR cleavage and cell growth.
- A missense mutation in XEDAR causes cytoplasmic mislocalization, impairing its tumor-suppressive function.
Conclusions:
- Membrane localization of XEDAR is essential for its growth-suppressive activity.
- The EDA-A2/XEDAR interaction is critical in the p53 signaling pathway for colorectal cancer suppression.
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