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1.
J Biol Chem ; 283(8): 4983-92, 2008 Feb 22.
Article in English | MEDLINE | ID: mdl-18079118

ABSTRACT

The interaction of astral microtubules with cortical actin networks is essential for the correct orientation of the mitotic spindle; however, little is known about how the cortical actin organization is regulated during mitosis. LIM kinase-1 (LIMK1) regulates actin dynamics by phosphorylating and inactivating cofilin, an actin-depolymerizing protein. LIMK1 activity increases during mitosis. Here we show that mitotic LIMK1 activation is critical for accurate spindle orientation in mammalian cells. Knockdown of LIMK1 suppressed a mitosis-specific increase in cofilin phosphorylation and caused unusual cofilin localization in the cell cortex in metaphase, instability of cortical actin organization and astral microtubules, irregular rotation and misorientation of the spindle, and a delay in anaphase onset. Similar results were obtained by treating the cells with a LIMK1 in hibitor peptide or latrunculin A or by overexpressing a non-phosphorylatable cofilin(S3A) mutant. Furthermore, localization of LGN (a protein containing the repetitive Leu-Gly-Asn tripeptide motifs), an important regulator of spindle orientation, in the crescent-shaped cortical regions was perturbed in LIMK1 knockdown cells. Our results suggest that LIMK1-mediated cofilin phosphorylation is required for accurate spindle orientation by stabilizing cortical actin networks during mitosis.


Subject(s)
Actin Depolymerizing Factors/metabolism , Anaphase/physiology , Lim Kinases/metabolism , Metaphase/physiology , Spindle Apparatus/metabolism , Actin Depolymerizing Factors/genetics , Actins/genetics , Actins/metabolism , Amino Acid Substitution , Animals , Bridged Bicyclo Compounds, Heterocyclic/pharmacology , Carrier Proteins/genetics , Carrier Proteins/metabolism , Cell Cycle Proteins , HeLa Cells , Humans , Intracellular Signaling Peptides and Proteins/genetics , Intracellular Signaling Peptides and Proteins/metabolism , Lim Kinases/antagonists & inhibitors , Lim Kinases/genetics , Mice , Microtubules/genetics , Microtubules/metabolism , Mutation, Missense , Peptides/genetics , Peptides/pharmacology , Phosphorylation/drug effects , Spindle Apparatus/genetics , Thiazolidines/pharmacology
2.
Genes Cells ; 8(10): 811-24, 2003 Oct.
Article in English | MEDLINE | ID: mdl-14531860

ABSTRACT

BACKGROUND: Cofilin, a key regulator of actin filament dynamics, is inactivated by phosphorylation at Ser-3 by LIM-kinases and is reactivated by dephosphorylation by a family of protein phosphatases, termed Slingshot (SSH). RESULTS: We have identified two novel isoforms of SSHs, termed SSH-2L and SSH-3L and characterized them in comparison with SSH-1L that was previously reported. SSH-1L and SSH-2L, but not SSH-3L, tightly bound to and co-localized with actin filaments. When expressed in cultured cells, SSH-1L, SSH-2L and SSH-3L decreased the level of Ser-3-phosphorylated cofilin (P-cofilin) in cells and suppressed LIM-kinase-induced actin reorganization, although SSH-3L was less effective than SSH-1L and SSH-2L. In cell-free assays, SSH-1L and SSH-2L efficiently dephosphorylated P-cofilin, whereas SSH-3L did do so only weakly. Using deleted mutants of SSH-1L and SSH-2L, we found that the N-terminal and C-terminal extracatalytic regions are critical for cofilin-phosphatase and F-actin-binding activities, respectively. In situ hybridization analyses revealed characteristic patterns of expression of each of the mouse Ssh genes in both neuronal and non-neuronal tissues; in particular, expression of Ssh-3 in epithelial tissues is evident. CONCLUSION: SSH-1L, SSH-2L and SSH-3L have the potential to dephosphorylate P-cofilin, but subcellular distribution, F-actin-binding activity, specific phosphatase activity and expression patterns significantly differ, which suggests that they have related but distinct functions in various cellular and developmental events.


Subject(s)
Brain/enzymology , Microfilament Proteins/metabolism , Phosphoric Monoester Hydrolases/metabolism , Actin Depolymerizing Factors , Actins/metabolism , Amino Acid Sequence , Animals , Antibodies, Monoclonal/metabolism , Base Sequence , Brain/embryology , Brain/metabolism , COS Cells , Cell Line , Chlorocebus aethiops , Conserved Sequence , HeLa Cells , Humans , Isoenzymes/genetics , Isoenzymes/metabolism , Lim Kinases , Mice , Molecular Sequence Data , Phosphoric Monoester Hydrolases/chemistry , Phosphoric Monoester Hydrolases/genetics , Phosphorylation , Protein Kinases/metabolism , Protein Structure, Tertiary , RNA, Messenger/metabolism , Sequence Homology, Amino Acid
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