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Bead Aggregation Assays for the Characterization of Putative Cell Adhesion Molecules
Published on: October 17, 2014
Defining the function of beta-catenin tyrosine phosphorylation in cadherin-mediated cell-cell adhesion
Junji Tominaga1, Yoshitaka Fukunaga, Edgardo Abelardo
1Division of Cellular Interactions, Institute of Molecular Embryology and Genetics, Kumamoto University, Kumamoto 860-0811, Japan.
Abstract:
Beta-catenin is a key protein in cadherin-catenin cell adhesion complex and its tyrosine phosphorylation is believed to cause destruction of junctional apparatus. The broad spectrum of substrates for kinases and phosphatases, however, does not rule out tyrosine phosphorylation of other junctional proteins as the main culprit in reduction of cell adhesion activity. Further, the endogenous beta-catenin perturbs detailed functional analysis of phosphorylated mutant beta-catenin in living cells. To directly evaluate the effect of beta-catenin tyrosine phosphorylation in cell adhesion, we utilized F9 cells in which expression of endogenous beta-catenin and its closely related protein plakoglobin were completely shut down. We also used alpha-catenin-deficient (alphaD) cells to evaluate the role of alpha-catenin on beta-catenin tyrosine phosphorylation. We show that beta-catenin with phosphorylation mutation at 654th tyrosine forms functional cadherin-catenin complex to mediate strong cadherin-mediated cell adhesion. Moreover, we show that 64th and 86th tyrosines are mainly phosphorylated in F9 cells, especially in the absence of alpha-catenin. Phosphorylation of these tyrosine residues, however, does not affect cadherin-mediated cell adhesion activity. Our data identified a novel site phosphorylated by endogenous tyrosine kinases in beta-catenin. We also demonstrate that tyrosine phosphorylation of beta-catenin might regulate cadherin-mediated cell adhesion in a more complicated way than previously expected.
Insights
Tyrosine phosphorylation of beta-catenin, a key cell adhesion protein, does not disrupt cell adhesion. Specific phosphorylation sites (Y64, Y86) do not impact cadherin-mediated cell adhesion, suggesting complex regulatory roles.
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- Beta-catenin is crucial for cadherin-catenin cell adhesion complexes.
- Tyrosine phosphorylation of beta-catenin was hypothesized to impair cell adhesion.
- Endogenous beta-catenin complicates functional analysis of phosphorylated mutants.
Purpose of the Study:
- To directly assess the impact of beta-catenin tyrosine phosphorylation on cell adhesion.
- To investigate the role of alpha-catenin in beta-catenin phosphorylation.
- To identify novel phosphorylation sites on beta-catenin.
Main Methods:
- Utilized F9 cells with suppressed endogenous beta-catenin and plakoglobin.
- Employed alpha-catenin-deficient (alphaD) cells.
- Analyzed beta-catenin phosphorylation mutants and their effect on cell adhesion.
Main Results:
- Beta-catenin mutated at tyrosine 654 maintains functional cadherin-catenin complex and cell adhesion.
- Tyrosines 64 and 86 are major phosphorylation sites in F9 cells, particularly without alpha-catenin.
- Phosphorylation at Y64 and Y86 does not impede cadherin-mediated cell adhesion.
Conclusions:
- Beta-catenin tyrosine phosphorylation at Y64 and Y86 does not negatively affect cell adhesion.
- A novel beta-catenin phosphorylation site by endogenous tyrosine kinases was identified.
- Tyrosine phosphorylation of beta-catenin may regulate cell adhesion in a complex manner.
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