The phosphorylation of p25/TPPP by LIM kinase 1 inhibits its ability to assemble microtubules |
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Authors: | Acevedo Karla Li Rong Soo Priscilla Suryadinata Randy Sarcevic Boris Valova Valentina A Graham Mark E Robinson Phillip J Bernard Ora |
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Affiliation: | St. Vincent's Institute of Medical Research, 9 Princes St. Fitzroy, Victoria 3065, Australia. |
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Abstract: | LIM kinase 1 (LIMK1) is a key regulator of actin dynamics as it phosphorylates and inactivates cofilin, an actin-depolymerizing factor. LIMK1 activity is also required for microtubule disassembly in endothelial cells. A search for LIMK1-interacting proteins identified p25alpha, a phosphoprotein that promotes tubulin polymerization. We found that p25 is phosphorylated by LIMK1 on serine residues in vitro and in cells. Immunoblotting analysis revealed that p25 is not a brain specific protein as previously reported, but is expressed in all mouse tissues. Immunofluorescence analysis demonstrated that endogenous p25 is co-localized with microtubules and is also found in the nucleus. Down-regulation of p25 by siRNA decreased microtubule levels while its overexpression in stable NIH-3T3 cell lines increased cell size and levels of stable tubulin. Bacterially expressed unphosphorylated p25 promotes microtubule assembly in vitro; however, when phosphorylated in cells, p25 lost its ability to assemble microtubule. Our results represent a surprising connection between the tubulin and the actin cytoskeleton mediated by LIMK1. We propose that the LIMK1 phosphorylation of p25 blocks p25 activity, thus promoting microtubule disassembly. |
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Keywords: | LIMK1 p25-TPPP Microtubules Phosphorylation Expression pattern |
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