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Inhibition of transforming activity of the ret/ptc1 oncoprotein by a 2-indolinone derivative
C Lanzi1, G Cassinelli, T Pensa
1Division of Experimental Oncology B, Istituto Nazionale Tumori, Milan, Italy. Lanzi@istitutotumori.mi.it
Abstract:
ret-derived oncogenes are frequently and specifically expressed in thyroid tumors. In contrast to the ret receptor, ret oncoproteins are characterized by ligand-independent tyrosine-kinase activity and tyrosine phosphorylation. In this study, novel synthetic arylidene 2-indolinone compounds were evaluated as inhibitors of the ret/ptc1 tyrosine kinase. Four compounds inhibited ret/ptc1 activity in immunokinase assay (IC50 27-42 microM) including one (1,3-dihydro-5,6-dimethoxy-3-[(4-hydroxyphenyl) methylene)-2H-indol-2-one) (Cpd 1) that selectively inhibited the anchorage-independent growth of NIH3T3 transformants expressing the ret/ptc1 gene (NIH3T3ptc1 cells). Following exposure to Cpd 1, the transformed phenotype of NIH3T3ptc1 cells was reverted, within 24 hr, to a normal fibroblast-like morphology in adherent-cell culture. In these cells, the constitutive tyrosine phosphorylation of ret/ptc1, of the transducing adaptor protein shc and of a series of co-immunoprecipitated peptides became much reduced, as demonstrated by immunoprecipitation/Western-blot analyses. Data presented provide additional evidence that ret/ptc1 is directly implicated in malignant transformation, and demonstrate the ability of Cpd 1 to interfere in the signal transduction pathway constitutively activated by the ret/ptc1 oncoprotein. These results confirm the interest of the arylidene 2-indolinone class of tyrosine-kinase inhibitors as tools for the study of ret signaling and the control of cell proliferation in ret- and ret/ptcs-associated diseases.
Insights
Novel arylidene 2-indolinone compounds were tested as inhibitors of ret/ptc1 tyrosine kinase. Compound 1 selectively inhibited transformed cell growth and reverted cell morphology, demonstrating potential for treating ret-associated diseases.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Ret-derived oncogenes are prevalent in thyroid tumors.
- Ret oncoproteins exhibit ligand-independent tyrosine kinase activity.
- Constitutive activation of ret signaling drives malignant transformation.
Purpose of the Study:
- To evaluate novel synthetic arylidene 2-indolinone compounds as inhibitors of ret/ptc1 tyrosine kinase.
- To assess the effect of these compounds on the transformed phenotype of NIH3T3ptc1 cells.
- To investigate the impact of compound 1 on ret/ptc1 signaling pathways.
Main Methods:
- Immunokinase assay to measure ret/ptc1 activity.
- Anchorage-independent growth assay using NIH3T3ptc1 cells.
- Immunoprecipitation and Western blot analyses to assess protein phosphorylation.
Main Results:
- Four arylidene 2-indolinone compounds inhibited ret/ptc1 activity (IC50 27-42 microM).
- Compound 1 selectively inhibited anchorage-independent growth of NIH3T3ptc1 cells.
- Compound 1 reverted the transformed phenotype and reduced tyrosine phosphorylation of key signaling proteins.
Conclusions:
- Ret/ptc1 is directly involved in malignant transformation.
- Compound 1 effectively interferes with the ret/ptc1 signal transduction pathway.
- Arylidene 2-indolinone derivatives are promising tools for studying ret signaling and developing therapies for ret-associated diseases.