Deletion of an Amino-Terminal Sequence Stabilizes β-Catenin In Vivo and Promotes Hyperphosphorylation of the Adenomatous Polyposis Coli Tumor Suppressor Protein
Open Access
- 1 August 1996
- journal article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 16 (8) , 4088-4094
- https://doi.org/10.1128/mcb.16.8.4088
Abstract
Regulation of cell adhesion and cell signaling by beta-catenin occurs through a mechanism likely involving the targeted degradation of the protein. Deletional analysis was used to generate a beta-catenin refractory to rapid turnover and to examine its effects on complexes containing either cadherin or the adenomatous polyposis coli (APC) protein. The results show that amino-terminal deletion of beta-catenin results in a protein with increased stability that acts in a dominant fashion with respect to wild-type beta-catenin. Constitutive expression in AtT20 cells of a beta-catenin lacking 89 N-terminal amino acids (deltaN89beta-catenin) resulted in severely reduced levels of the more labile wild-type beta-catenin. The mutant beta-catenin was expressed at endogenous levels but displaced the vast majority of wild-type beta-catenin associated with N-cadherin. The deltaN89beta-catenin accumulated on the APC protein to a level 10-fold over that of wild-type beta-catenin and recruited a kinase into the APC complex. The kinase was highly active toward APC in vitro and promoted a sodium dodecyl sulfate gel band shift that was also evident for endogenous APC from cells expressing the mutant beta-catenin. Unlike wild-type beta-catenin, which partitions solely as part of a high-molecular-weight complex, the deltaN89 mutant protein also fractionated as a stable monomer, indicating that it had escaped the requirement to associate with other proteins. That similar N-terminal mutants of beta-catenin have been implicated in cellular transformation suggests that their abnormal association with APC may, in part, be responsible for this phenotype.Keywords
This publication has 38 references indexed in Scilit:
- Binding of GSK3β to the APC-β-Catenin Complex and Regulation of Complex AssemblyScience, 1996
- Cell adhesion and signal transduction: the Armadillo connectionTrends in Cell Biology, 1995
- Mutations in the APC gene and their implications for protein structure and functionCurrent Opinion in Genetics & Development, 1995
- Expression of Wnt-1 in PC12 cells results in modulation of plakoglobin and E-cadherin and increased cellular adhesion.The Journal of cell biology, 1993
- APC mutations occur early during colorectal tumorigenesisNature, 1992
- Somatic mutations of the APC gene in colorectal tumors: mutation cluster region in the APC geneHuman Molecular Genetics, 1992
- Identification of FAP Locus Genes from Chromosome 5q21Science, 1991
- Identification of deletion mutations and three new genes at the familial polyposis locusCell, 1991
- Identification and characterization of the familial adenomatous polyposis coli geneCell, 1991
- Expression of the int-1 gene in transgenic mice is associated with mammary gland hyperplasia and adenocarcinomas in male and female miceCell, 1988