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RNA Binding Protein CUGBP1 Inhibits Liver Cancer in a Phosphorylation-Dependent Manner.
- Source :
-
Molecular and cellular biology [Mol Cell Biol] 2017 Jul 28; Vol. 37 (16). Date of Electronic Publication: 2017 Jul 28 (Print Publication: 2017). - Publication Year :
- 2017
-
Abstract
- Despite intensive investigations, mechanisms of liver cancer are not known. Here, we identified an important step of liver cancer, which is the neutralization of tumor suppressor activities of an RNA binding protein, CUGBP1. The translational activity of CUGBP1 is activated by dephosphorylation at Ser302. We generated CUGBP1-S302A knock-in mice and found that the reduction of translational activity of CUGBP1 causes development of a fatty liver phenotype in young S302A mice. Examination of liver cancer in diethylnitrosamine (DEN)-treated CUGBP1-S302A mice showed these mice develop much more severe liver cancer that is associated with elimination of the mutant CUGBP1. Searching for mechanisms of this elimination, we found that the oncoprotein gankyrin (Gank) preferentially binds to and triggers degradation of dephosphorylated CUGBP1 (de-ph-S302-CUGBP1) or S302A mutant CUGBP1. To test the role of Gank in degradation of CUGBP1, we generated mice with liver-specific deletion of Gank. In these mice, the tumor suppressor isoform of CUGBP1 is protected from Gank-mediated degradation. Consistent with reduction of CUGBP1 in animal models, CUGBP1 is reduced in patients with pediatric liver cancer. Thus, this work presents evidence that de-ph-S302-CUGBP1 is a tumor suppressor protein and that the Gank-UPS-mediated reduction of CUGBP1 is a key event in the development of liver cancer.<br /> (Copyright © 2017 American Society for Microbiology.)
- Subjects :
- Aging metabolism
Animals
Carcinogenesis metabolism
Carcinogenesis pathology
Child
Diethylnitrosamine
Disease Models, Animal
E2F1 Transcription Factor metabolism
Feedback, Physiological
Gene Deletion
Gene Knock-In Techniques
Humans
Liver metabolism
Liver pathology
Liver physiopathology
Liver Cirrhosis pathology
Liver Neoplasms genetics
Mutant Proteins metabolism
Mutation genetics
Organ Specificity
Phenotype
Phosphorylation
Promoter Regions, Genetic genetics
Proteasome Endopeptidase Complex metabolism
Protein Biosynthesis
Proteolysis
Transcription Factors metabolism
Tumor Suppressor Proteins metabolism
Ubiquitin metabolism
Up-Regulation
CELF1 Protein metabolism
Liver Neoplasms metabolism
Liver Neoplasms pathology
Subjects
Details
- Language :
- English
- ISSN :
- 1098-5549
- Volume :
- 37
- Issue :
- 16
- Database :
- MEDLINE
- Journal :
- Molecular and cellular biology
- Publication Type :
- Academic Journal
- Accession number :
- 28559429
- Full Text :
- https://doi.org/10.1128/MCB.00128-17