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PMID: 22016822 Published · ppublish English Journal Article

Dissection of the RET/β-catenin interaction in the TPC1 thyroid cancer cell line.

American journal of cancer research ·Vol. 1 ·No. 6 ·2011-00-00 ·Pages 716-25

Tartari CJ, Donadoni C, Manieri E, Mologni L, Mina PD, Villa A, Gambacorti-Passerini C

Abstract

The RET receptor tyrosine kinase is a member of the cadherin superfamily and plays a pivotal role in cell survival, differentiation and proliferation. Currently, 12 ret/ptc chimeric oncogenes, characterized by the fusion between the intracellular domain of RET and different activating genes, which can cause ligand-independent dimerization and constitutive activation, have been described. β-catenin is usually involved in the maintenance of cell-to-cell adhesion and mediates the Wnt/β-catenin pathway important during embryogenesis and in cellular malignant transformation. Recently, a novel mechanism of RET-mediated function through the β-catenin pathway has been reported in multiple endocrine neoplasia type 2 and in sporadic thyroid carcinomas. Here, we investigated the effects of the ZD6474, a small molecule RET-inhibitor, on RET/β-catenin interaction. We confirmed the ZD6474 mediated-inhibition of recombinant RET kinase and of growth of cells expressing RET/PTC. Interestingly, we firstly observed reduced cellular mobility and changed morphology of TPC1 treated cells suggesting that RET-inhibitor could affect β-catenin cellular distribution as resulted in its co-immunoprecipitation with E-cadherin. We further investigated this hypothesis showing that TPC1 treated cells displayed predominantly β-catenin cytosolic localization. Surprisingly, RET and β-catenin co-immunoprecipitated in both ZD6474-treated and untreated TPC1 cells, suggesting that RET/β-catenin interaction might not be affected by RET kinase inactivation. All together these results suggest that RET kinase activation is crucial for β-catenin stabilization (pY654), localization and its signaling pathway activation but not for β-catenin/RET physical interactions, in human papillary thyroid carcinomas. In conclusion, ZD6474, by inhibiting RET kinase, down-modulates β-catenin pathway leading its recruitment to the membrane by E-cadherin.

Keywords
RET RET-inhibitor ZD6474 protein interaction β-catenin
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Tartari Carmen J
Donadoni Carla
Manieri Elisa
Mologni Luca
Mina Pamela Della
Villa Antonello
Gambacorti-Passerini Carlo
References (26)
26 references, click to expand
  1. Wnt/beta-catenin signaling in development and disease.
    Cell. 2006 Nov 3;127(3):469-80 PMID: 17081971
  2. RET and NTRK1 proto-oncogenes in human diseases.
    J Cell Physiol. 2003 May;195(2):168-86 PMID: 12652644
  3. Wnt/beta-catenin signaling.
    Cytokine Growth Factor Rev. 2000 Dec;11(4):273-82 PMID: 10959075
  4. Early clinical studies of novel therapies for thyroid cancers.
    Endocrinol Metab Clin North Am. 2008 Jun;37(2):511-24, xi PMID: 18502340
  5. The beta-catenin axis integrates multiple signals downstream from RET/papillary thyroid carcinoma leading to cell proliferation.
    Cancer Res. 2009 Mar 1;69(5):1867-76 PMID: 19223551
  6. Wnt/beta-catenin pathway.
    Sci STKE. 2005 Feb 15;2005(271):cm1 PMID: 15713948
  7. Identification of a Wnt/beta-catenin signaling pathway in human thyroid cells.
    Endocrinology. 2001 Dec;142(12):5261-6 PMID: 11713224
  8. Expression, purification, and inhibition of human RET tyrosine kinase.
    Protein Expr Purif. 2005 May;41(1):177-85 PMID: 15802236
  9. Vandetanib (ZD6474), a dual inhibitor of vascular endothelial growth factor receptor (VEGFR) and epidermal growth factor receptor (EGFR) tyrosine kinases: current status and future directions.
    Oncologist. 2009 Apr;14(4):378-90 PMID: 19349511
  10. Targeting RET for thyroid cancer therapy.
    Biochem Pharmacol. 2009 Feb 1;77(3):297-309 PMID: 19028457
  11. An enzyme-linked immunosorbent assay to screen for inhibitors of the oncogenic anaplastic lymphoma kinase.
    Haematologica. 2005 Jul;90(7):988-90 PMID: 15996942
  12. RET tyrosine kinase signaling in development and cancer.
    Cytokine Growth Factor Rev. 2005 Aug-Oct;16(4-5):441-67 PMID: 15982921
  13. Defining the function of beta-catenin tyrosine phosphorylation in cadherin-mediated cell-cell adhesion.
    Genes Cells. 2008 Jan;13(1):67-77 PMID: 18173748
  14. ZD6474, an orally available inhibitor of KDR tyrosine kinase activity, efficiently blocks oncogenic RET kinases.
    Cancer Res. 2002 Dec 15;62(24):7284-90 PMID: 12499271
  15. Involvement of H4(D10S170) protein in ATM-dependent response to DNA damage.
    Oncogene. 2007 Sep 13;26(42):6167-75 PMID: 17420723
  16. Tyrosine kinase receptor-activated signal transduction pathways which lead to oncogenesis.
    Oncogene. 1998 Sep 17;17(11 Reviews):1343-52 PMID: 9779982
  17. Cloning and characterization of H4 (D10S170), a gene involved in RET rearrangements in vivo.
    Oncogene. 1994 Sep;9(9):2531-5 PMID: 8058316
  18. Assembly of the cadherin-catenin complex in vitro with recombinant proteins.
    J Cell Sci. 1994 Dec;107 ( Pt 12):3655-63 PMID: 7706414
  19. Cadherin-catenin complex: protein interactions and their implications for cadherin function.
    J Cell Biochem. 1996 Jun 15;61(4):514-23 PMID: 8806074
  20. RET/PTC1-driven neoplastic transformation and proinvasive phenotype of human thyrocytes involve Met induction and beta-catenin nuclear translocation.
    Neoplasia. 2009 Jan;11(1):10-21 PMID: 19107227
  21. Novel 4-anilinoquinazolines with C-7 basic side chains: design and structure activity relationship of a series of potent, orally active, VEGF receptor tyrosine kinase inhibitors.
    J Med Chem. 2002 Mar 14;45(6):1300-12 PMID: 11881999
  22. A novel RET kinase-beta-catenin signaling pathway contributes to tumorigenesis in thyroid carcinoma.
    Cancer Res. 2008 Mar 1;68(5):1338-46 PMID: 18316596
  23. The canonical Wnt/beta-catenin signalling pathway.
    Methods Mol Biol. 2008;468:5-15 PMID: 19099242
  24. H4(D10S170), a gene frequently rearranged with RET in papillary thyroid carcinomas: functional characterization.
    Oncogene. 2004 Jan 8;23(1):109-21 PMID: 14712216
  25. Regulation of E-cadherin/Catenin association by tyrosine phosphorylation.
    J Biol Chem. 1999 Dec 17;274(51):36734-40 PMID: 10593980
  26. Rearrangements of RET and NTRK1 tyrosine kinase receptors in papillary thyroid carcinomas.
    Recent Results Cancer Res. 1998;154:237-47 PMID: 10027004
Article Info
Journal
American journal of cancer research
Abbr.
Am J Cancer Res
ISSN
2156-6976
Published
2011-00-00
Epub
2011-00-01
Pages
716-25
Language
English
Region
United States
NLM ID
101549944
PMCID
PMC3195932
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