A method for the isolation of tyrosine kinases substrates was developed. The method takes advantage of immuno-affinity purification of an entire set of proteins phosphorylated by tyrosine kinases, followed by generation of antisera against the purified protein pool and immunological screening of bacterial expression libraries with these antisera. By applying this methodology to the study of the phosphorylation events triggered by activation of the epidermal growth factor receptors, we have isolated several cDNAs encoding novel putative tyrosine kinase substrates. One of these cDNAs encodes radixin, a protein belonging to the band 4.1 family of proteins and highly related to ezrin and moesin. We demonstrated that, despite a high degree of relatedness, these three proteins exhibit a distinct receptor-specific pattern of phosphorylation, raising the possibility that they might mediate receptor-specific cellular changes. In addition the generation of antibodies specific for either radixin, ezrin or moesin allowed us to show that a previously described tumor transplantation antigen is indeed ezrin, thus implicating this protein in the determination of the biological phenotype of certain tumors.

The ezrin-like family of tyrosine kinase substrates: receptor-specific pattern of tyrosine phosphorylation and relationship to malignant transformation / F. Fazioli, W. T. Wong, S. J. Ullrich, K. Sakaguchi, E. Appella, P. P. Di Fiore. - In: ONCOGENE. - ISSN 0950-9232. - 8:5(1993 May), pp. 1335-45-1345.

The ezrin-like family of tyrosine kinase substrates: receptor-specific pattern of tyrosine phosphorylation and relationship to malignant transformation

P. P. Di Fiore
Ultimo
1993

Abstract

A method for the isolation of tyrosine kinases substrates was developed. The method takes advantage of immuno-affinity purification of an entire set of proteins phosphorylated by tyrosine kinases, followed by generation of antisera against the purified protein pool and immunological screening of bacterial expression libraries with these antisera. By applying this methodology to the study of the phosphorylation events triggered by activation of the epidermal growth factor receptors, we have isolated several cDNAs encoding novel putative tyrosine kinase substrates. One of these cDNAs encodes radixin, a protein belonging to the band 4.1 family of proteins and highly related to ezrin and moesin. We demonstrated that, despite a high degree of relatedness, these three proteins exhibit a distinct receptor-specific pattern of phosphorylation, raising the possibility that they might mediate receptor-specific cellular changes. In addition the generation of antibodies specific for either radixin, ezrin or moesin allowed us to show that a previously described tumor transplantation antigen is indeed ezrin, thus implicating this protein in the determination of the biological phenotype of certain tumors.
Animals; Blood Proteins; Receptor, Epidermal Growth Factor; Humans; Tyrosine; Protein-Tyrosine Kinases; Antigens, Neoplasm; Rabbits; Mice; Microfilament Proteins; Amino Acid Sequence; Membrane Proteins; Cloning, Molecular; Histocompatibility Antigens; Base Sequence; Phosphorylation; Phosphoproteins; Receptors, Platelet-Derived Growth Factor; Molecular Sequence Data; Proteins; Cytoskeletal Proteins; Neuropeptides; Cell Transformation, Neoplastic
Settore MED/04 - Patologia Generale
mag-1993
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/195916
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