Calyculin A-induced vimentin phosphorylation sequesters 14-3-3 and displaces other 14-3-3 partners in vivo.
14-3-3 proteins bind their targets through a specific serine/threonine-phosphorylated motif present on the target protein. This binding is a crucial step in the phosphorylation-dependent regulation of various key proteins involved in signal transduction and cell cycle control. We report that treatment of COS-7 cells with the phosphatase inhibitor calyculin A ... induces association of 14-3-3 with a 55-kDa protein, identified as the intermediate filament protein vimentin. Association of vimentin with 14-3-3 depends on vimentin phosphorylation and requires the phosphopeptide-binding domain of 14-3-3. The region necessary for binding to 14-3-3 is confined to the vimentin amino-terminal head domain (amino acids 1-96). Monomeric forms of 14-3-3 do not bind vimentin in vivo or in vitro, indicating that a stable complex requires the binding of a 14-3-3 dimer to two sites on a single vimentin polypeptide. The calyculin A-induced association of vimentin with 14-3-3 in vivo results in the displacement of most other 14-3-3 partners, including the protooncogene Raf, which nevertheless remain capable of binding 14-3-3 in vitro. Concomitant with 14-3-3 displacement, calyculin A treatment blocks Raf activation by EGF; however, this inhibition is completely overcome by 14-3-3 overexpression in vivo or by the addition of prokaryotic recombinant 14-3-3 in vitro. Thus, phosphovimentin, by sequestering 14-3-3 and limiting its availability to other target proteins can affect intracellular signaling processes that require 14-3-3.
Mesh Terms:
14-3-3 Proteins, Amino Acid Sequence, Animals, COS Cells, Enzyme Inhibitors, Molecular Sequence Data, Oxazoles, Phosphoprotein Phosphatases, Phosphorylation, Protein Binding, Signal Transduction, Tyrosine 3-Monooxygenase, Vimentin
14-3-3 Proteins, Amino Acid Sequence, Animals, COS Cells, Enzyme Inhibitors, Molecular Sequence Data, Oxazoles, Phosphoprotein Phosphatases, Phosphorylation, Protein Binding, Signal Transduction, Tyrosine 3-Monooxygenase, Vimentin
J. Biol. Chem.
Date: Sep. 22, 2000
PubMed ID: 10887173
View in: Pubmed Google Scholar
Download Curated Data For This Publication
8274
Switch View:
- Interactions 7