The ABL1 proto-oncogene encodes a cytoplasmic and nuclear protein tyrosine kinase (c-Abl) that has been implicated in processes of cell differentiation, cell division, cell adhesion and stress response. Alterations of ABL1 by chromosomal rearrangement or viral transduction can lead to malignant transformation. Activity of the c-Abl protein is negatively regulated by its SH3 domain through an unknown mechanism, and deletion of the SH3 domain turns ABL1 into an oncogene. We present evidence for an intramolecular inhibitory interaction of the SH3 domain with the catalytic domain and with the linker between the SH2 and catalytic domain (SH2-CD linker). Site-directed mutations in each of these three elements activate c-Abl. Mutations in the linker cause a conformational change of the molecule and increase binding of the SH3 domain to peptide ligands. Individual mutation of two charged residues in the SH3 and catalytic domain activates c-Abl, while inhibition is restored in the double reciprocal mutant. We propose that regulators of c-Abl will have opposite effects on its activity depending on their ability to favour or disrupt these intramolecular interactions.

Barila', D., Superti_furga, G. (1998). An intramolecular SH3-domain interaction regulates c-Abl activity. NATURE GENETICS, 18(3), 280-282 [10.1038/ng0398-280].

An intramolecular SH3-domain interaction regulates c-Abl activity

BARILA', DANIELA;
1998-03-01

Abstract

The ABL1 proto-oncogene encodes a cytoplasmic and nuclear protein tyrosine kinase (c-Abl) that has been implicated in processes of cell differentiation, cell division, cell adhesion and stress response. Alterations of ABL1 by chromosomal rearrangement or viral transduction can lead to malignant transformation. Activity of the c-Abl protein is negatively regulated by its SH3 domain through an unknown mechanism, and deletion of the SH3 domain turns ABL1 into an oncogene. We present evidence for an intramolecular inhibitory interaction of the SH3 domain with the catalytic domain and with the linker between the SH2 and catalytic domain (SH2-CD linker). Site-directed mutations in each of these three elements activate c-Abl. Mutations in the linker cause a conformational change of the molecule and increase binding of the SH3 domain to peptide ligands. Individual mutation of two charged residues in the SH3 and catalytic domain activates c-Abl, while inhibition is restored in the double reciprocal mutant. We propose that regulators of c-Abl will have opposite effects on its activity depending on their ability to favour or disrupt these intramolecular interactions.
mar-1998
Pubblicato
Rilevanza internazionale
Articolo
Sì, ma tipo non specificato
Settore BIO/18 - GENETICA
English
Con Impact Factor ISI
Protein Biosynthesis; 3T3 Cells; Proto-Oncogene Proteins c-abl; Cell Line; Tyrosine; Gene Expression Regulation, Neoplastic; Peptides; Transfection; Mutation; src Homology Domains; Precipitin Tests; Animals; Humans; Signal Transduction; Recombinant Proteins; Mice; Mutagenesis, Site-Directed; Molecular Sequence Data; Phosphorylation; Amino Acid Sequence; Kidney
http://www.nature.com/ng/journal/v18/n3/abs/ng0398-280.html
Barila', D., Superti_furga, G. (1998). An intramolecular SH3-domain interaction regulates c-Abl activity. NATURE GENETICS, 18(3), 280-282 [10.1038/ng0398-280].
Barila', D; Superti_furga, G
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/10566
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