Abstract
Testicular protein kinase 1 (TESK1) is a serine/threonine kinase that phosphorylates cofilin and induces actin cytoskeletal reorganization. The kinase activity of TESK1 is stimulated by integrin-mediated signaling pathways, but the mechanism of regulation has remained unknown. By using the yeast two-hybrid system, we identified 14-3-3beta to be the binding protein of TESK1. Specific interaction between TESK1 and 14-3-3beta became evident in in vitro and in vivo co-precipitation assays. 14-3-3beta interacts with TESK1 through the C-terminal region of TESK1 and in a manner dependent on the phosphorylation of Ser-439 within an RXXSXP motif. Binding of 14-3-3beta inhibited the kinase activity of TESK1. During cell spreading on fibronectin, the TESK1/14-3-3beta interaction significantly decreased, in a time course that inversely correlated with increase in TESK1 kinase activity. Thus, the dissociation of 14-3-3beta from a TESK1/14-3-3beta complex is likely to be involved in the integrin-mediated TESK1 activation. In HeLa cells, TESK1, together with 14-3-3beta, accumulated at the cell periphery when cells were plated on fibronectin, whereas they were diffusely distributed in the cytoplasm in the case of non-stimulated cells. We propose that 14-3-3beta plays important roles in regulating the kinase activity of TESK1 and localizing TESK1 to cell adhesion sites following integrin stimulation.
Highlights
Actin cytoskeletal reorganization is essential for various cell activities, including adhesion, motility, morphological change, secretion, and cytokinesis
Identification of 14-3-3 as the Testicular protein kinase 1 (TESK1)-interacting Protein—To identify proteins that interact with TESK1, we used the yeast two-hybrid system
To determine the region of TESK1 that interacts with 14-33, we prepared a series of pDBLeu constructs coding for TESK1 fragments (Fig. 1A), and we examined the potential to interact with 14-3-3 in the yeast two-hybrid system
Summary
Actin cytoskeletal reorganization is essential for various cell activities, including adhesion, motility, morphological change, secretion, and cytokinesis. We propose that 14-3-3 plays important roles in regulating the kinase activity of TESK1 and localizing TESK1 to cell adhesion sites following integrin stimulation.
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