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Updated: Jul 20, 2025

Functional Reconstitution and Channel Activity Measurements of Purified Wildtype and Mutant CFTR Protein
Published on: March 9, 2015
Identification of α-Tocopherol succinate as an RFFL-substrate interaction inhibitor inducing peripheral CFTR
Sachiho Taniguchi1, Yuji Ono1, Yukako Doi1
1Department of Biomedical Sciences, School of Biological and Environmental Sciences, Kwansei Gakuin University, Hyogo 669-1337, Japan.
Abstract:
The E3 ubiquitin ligase RFFL is an apoptotic inhibitor highly expressed in cancers and its knockdown suppresses cancer cell growth and sensitizes to chemotherapy. RFFL also participates in peripheral protein quality control which removes the functional cell surface ΔF508-CFTR channel and reduces the efficacy of pharmaceutical therapy for cystic fibrosis (CF). Although RFFL inhibitors have therapeutic potential for both cancer and CF, they remain undiscovered. Here, a chemical array screening has identified α-tocopherol succinate (αTOS) as an RFFL ligand. NMR analysis revealed that αTOS directly binds to RFFL's substrate-binding region without affecting the E3 enzymatic activity. Consequently, αTOS inhibits the RFFL-substrate interaction, ΔF508-CFTR ubiquitination and elimination from the plasma membrane of epithelial cells, resulting in the increased functional CFTR channel. Among the α-tocopherol (αTOL) analogs we tested, only αTOS inhibited the RFFL-substrate interaction and increased the cell surface ΔF508-CFTR, depending on RFFL expression. Similarly, the unique proapoptotic effect of αTOS was dependent on RFFL expression. Thus, unlike other αTOL analogs, αTOS acts as an RFFL protein-protein interaction inhibitor which may explain its unique biological properties among αTOL analogs. Moreover, αTOS may act as a CFTR stabilizer, a novel class of drugs that extend cell surface ΔF508-CFTR lifetime.
Insights
Alpha-tocopherol succinate (αTOS) inhibits RFFL, an E3 ubiquitin ligase involved in cancer and cystic fibrosis (CF). This discovery offers potential new therapies by stabilizing the CFTR protein in CF cells.
Area of Science:
- Biochemistry
- Molecular Biology
- Pharmacology
Background:
- RFFL, an E3 ubiquitin ligase, inhibits apoptosis and is highly expressed in cancers.
- RFFL degrades the functional cell surface ΔF508-CFTR channel, reducing cystic fibrosis (CF) therapy efficacy.
- RFFL inhibitors are sought for cancer and CF treatment, but none have been discovered.
Purpose of the Study:
- To identify novel RFFL inhibitors.
- To investigate the therapeutic potential of identified compounds for cancer and CF.
- To elucidate the mechanism of action of RFFL inhibitors.
Main Methods:
- Chemical array screening to identify RFFL ligands.
- NMR analysis to determine binding interactions.
- Cell-based assays to assess RFFL-substrate interaction, ΔF508-CFTR ubiquitination, and cell surface expression.
Main Results:
- Alpha-tocopherol succinate (αTOS) was identified as an RFFL ligand that binds to RFFL's substrate-binding region.
- αTOS inhibits RFFL-substrate interaction and ΔF508-CFTR ubiquitination, increasing functional CFTR at the cell surface.
- αTOS exhibits RFFL-dependent proapoptotic effects and acts as a novel CFTR stabilizer.
Conclusions:
- αTOS is a potent RFFL inhibitor with therapeutic potential for cancer and CF.
- αTOS functions as an RFFL protein-protein interaction inhibitor, distinct from other α-tocopherol analogs.
- αTOS represents a novel class of CFTR stabilizers that prolong the lifetime of cell surface ΔF508-CFTR.
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