Abstract
We have previously identified a human receptor protein tyrosine phosphatase of the MAM domain family, termed PCP-2, in human pancreatic adenocarcinoma cells and found that this protein was colocalized with beta-catenin and E-cadherin at cell junctions [Wang, H.-Y., et al. (1996) Oncogene 12, 2555-2562]. Its intracellular part consists of two tandem phosphatase domains and a relatively large juxtamembrane region that is homologous to the conserved intracellular domain of cadherins, suggesting a role in the regulation of cell adhesion. This study reports that PCP-2 was endogenously expressed at the cell surface and upregulated with increased cell density. An in vivo binding assay revealed that PCP-2 could directly interact with beta-catenin through a region in the juxtamembrane domain. Tyrosine phosphorylation of beta-catenin by EGF or active SrcY527F did not disrupt the formation of the PCP-2-beta-catenin complex, while PCP-2 in this complex could cause a significant reduction in the phosphorylation level in beta-catenin. Finally, we showed that PCP-2 was a negative regulator for cell migration. In conclusion, interaction of PCP-2 with its substrate beta-catenin is involved in the process of cell-cell contact.
Publication types
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Research Support, Non-U.S. Gov't
MeSH terms
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Animals
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Antigens, Neoplasm / chemistry*
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Antigens, Neoplasm / physiology
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COS Cells
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Cadherins / chemistry*
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Cadherins / physiology
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Cell Count
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Cell Line
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Cell Migration Inhibition
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Cell Movement / genetics
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Cell Movement / physiology
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Cricetinae
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Cytoskeletal Proteins / chemistry*
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Cytoskeletal Proteins / metabolism
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Cytoskeletal Proteins / physiology
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Gene Expression
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Humans
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Membrane Proteins / chemistry
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Membrane Proteins / genetics
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Membrane Proteins / physiology
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Mutagenesis, Site-Directed
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Phosphorylation
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Protein Structure, Tertiary / genetics
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Protein Tyrosine Phosphatases / analysis
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Protein Tyrosine Phosphatases / chemistry*
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Protein Tyrosine Phosphatases / genetics
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Protein Tyrosine Phosphatases / physiology
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RNA, Messenger / biosynthesis
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Receptors, Cell Surface / analysis
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Receptors, Cell Surface / chemistry*
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Receptors, Cell Surface / genetics
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Receptors, Cell Surface / physiology
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Substrate Specificity / genetics
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Trans-Activators / chemistry*
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Trans-Activators / metabolism
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Trans-Activators / physiology
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Transfection
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Tyrosine / chemistry
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beta Catenin
Substances
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Antigens, Neoplasm
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CTNNB1 protein, human
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Cadherins
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Cytoskeletal Proteins
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Membrane Proteins
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RNA, Messenger
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Receptors, Cell Surface
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Trans-Activators
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beta Catenin
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mammary carcinoma antigen
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Tyrosine
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Protein Tyrosine Phosphatases