Insulin-like growth factor 1 regulates the location, stability, and transcriptional activity of β-catenin
- *IGF Group and †Cancer Genetics and Immunology Laboratory, Imperial Cancer Research Fund, Institute of Molecular Medicine, John Radcliffe Hospital, Oxford, OX3 9DS, United Kingdom
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Contributed by Walter F. Bodmer
Abstract
The insulin-like growth factor (IGF) type 1 receptor is required for growth, transformation, and protection from apoptosis. IGFs can enhance cell migration, which is known to be influenced via regulation of the E-cadherin/β-catenin complex. We sought to investigate whether IGF-1 modulated the interaction between E-cadherin and β-catenin in human colorectal cancer cells. We used the C10 cell line, which we established and have previously shown to lack adenomatous polyposis coli, E-cadherin, or β-catenin mutations. We found that IGF-1 stimulation enhanced tyrosine phosphorylation of two proteins, β-catenin and insulin-receptor substrate 1, which formed a complex with E-cadherin. Tyrosine phosphorylation of β-catenin was accompanied by rapid (<1 min) dissociation from E-cadherin at the plasma membrane, followed by relocation to the cellular cytoplasm. IGF-1 also enhanced the stability of β-catenin protein. Despite this, we observed no enhancement of transcriptional activity in complex with T-cell factor 4 (Tcf-4) in human embryonic kidney 293 cells treated with IGF-1 or insulin alone. IGF-1 did, however, enhance transcriptional activity in combination with lithium chloride, an inhibitor of glycogen synthase kinase 3β, which also stabilizes β-catenin. In conclusion, we have shown that IGF-1 causes tyrosine phosphorylation and stabilization of β-catenin. These effects may contribute to transformation, cell migration, and a propensity for metastasis in vivo.
Footnotes
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↵ ‡ To whom reprint requests should be addressed. E-mail: macaulay{at}icrf.icnet.uk.
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Article published online before print: Proc. Natl. Acad. Sci. USA, 10.1073/pnas.210394297.
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Article and publication date are at www.pnas.org/cgi/doi/10.1073/pnas.210394297
- Abbreviations:
- Tcf-4,
- T-cell factor 4;
- IGF,
- insulin-like growth factor;
- IGF1R,
- IGF-1 receptor;
- APC,
- adenomatous polyposis coli;
- GSK3β,
- glycogen synthase kinase 3β
- Copyright © 2000, The National Academy of Sciences
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