Arber, S., Barbayannis, F.
A., Hanser, H., Schneider, C., Stanyon, C. A., Bernard, O. & Caroni,
P. (1998) Regulation of actin dynamics through phosphorylation of
cofilin by LIM-kinase. Nature. 393, 805-809.
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| Cell division, cell motility and the
formation and maintenance of specialized structures in differentiated
cells depend directly on the regulated dynamics of the actin
cytoskeleton. To understand the mechanisms of these basic cellular
processes, the signalling pathways that link external signals to the
regulation of the actin cytoskeleton need to be characterized. Here we
identify a pathway for the regulation of cofilin, a ubiquitous
actin-binding protein that is essential for effective depolymerization
of actin filaments. LIM-kinase 1, also known as KIZ, is a protein kinase
with two amino-terminal LIM motifs that induces stabilization of F-actin
structures in transfected cells. Dominant-negative LIM-kinasel inhibits
the accumulation of the F-actin. Phosphorylation experiments in vivo and
in vitro provide evidence that cofilin is a physiological substrate of
LIM-kinase 1. Phosphorylation by LIM-kinase 1 inactivates cofilin,
leading to accumulation of actin filaments. Constitutively active Rac
augmented cofilin phosphorylation and LIM-kinase 1 autophosphorylation
whereas phorbol ester inhibited these processes. Our results define a
mechanism for the regulation of cofilin and hence of actin dynamics in
vivo. By modulating the stability of actin cytoskeletal structures, this
pathway should play a central role in regulating cell motility and
morphogenesis. |
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