Journal of Biological Chemistry · 1996 · 171 citations · 28 references
Analysis of the calcium-dependent cell adhesion molecule E-cadherin has led to the identification of catenins, which are necessary for cadherin function. Growing evidence that cadherins and catenins are subjected to genetic alterations in carcinogenesis makes it especially important to understand protein-protein interactions within the cadherin-catenin complex. Here we report the identification and analysis of the alpha-catenin binding site in plakoglobin (gamma-catenin). Using N- and C-terminal truncations of plakoglobin, we identified a domain of 29 amino acids necessary and sufficient for binding alpha-catenin. The alpha-catenin binding site is fully encoded within exon 3 of plakoglobin but only partially represented in Armadillo repeat 1. This suggests that exons rather than individual Arm repeats encode functional domains of plakoglobin. Site-directed mutagenesis identified residues in the alpha-catenin binding site indispensable for binding in vitro. Analogous mutations in beta-catenin and Armadillo had identical effects. Our results indicate that single amino acid mutations in the alpha-catenin binding site of homologs of Armadillo could prevent a stable association with alpha-catenin, thus affecting cadherin-mediated adhesion.
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E-cadherin gene mutations provide clues to diffuse type gastric carcinomas.
Karl‐Friedrich Becker, Michael J. Atkinson, Ulrike Reich et al. · PubMed · 1994 · 780 citations
Masayuki Ozawa, Martin Ringwald, Rolf Kemler · Proceedings of the National Academy of Sciences · 1990 · 751 citations · Full text
Cell Adhesion Molecule, Cell Adhesion, Molecular Biology +19
Lack of β-catenin affects mouse development at gastrulation
Hélène Haegel, Lionel Larue, Mami Ohsugi et al. · Development · 1995 · 706 citations
Cell Lineage, Developmental Biology, Beta-catenin Null-mutant Embryos +15