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Arachidonic acid stimulates formation of a novel complex containing nucleolin and RhoA.


ABSTRACT: Arachidonic acid (AA) stimulates cell adhesion through a p38 mitogen activated protein kinase-mediated RhoA signaling pathway. Here we report that a proteomic screen following AA-treatment identified nucleolin, a multifunctional nucleolar protein, in a complex with the GTPase, RhoA, that also included the Rho kinase, ROCK. AA-stimulated cell adhesion was inhibited by expression of nucleolin-targeted shRNA and formation of the multiprotein complex was blocked by expression of dominant-negative RhoA. AA-treatment also induced ROCK-dependent serine phosphorylation of nucleolin and translocation of nucleolin from the nucleus to the cytoplasm, where it appeared to co-localize with RhoA. These data suggest the existence of a new signaling pathway through which the location and post-translational state of nucleolin are modulated.

SUBMITTER: Garcia MC 

PROVIDER: S-EPMC3089762 | biostudies-literature | 2011 Feb

REPOSITORIES: biostudies-literature

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Arachidonic acid stimulates formation of a novel complex containing nucleolin and RhoA.

Garcia Melissa C MC   Williams Jason J   Johnson Katina K   Olden Kenneth K   Roberts John D JD  

FEBS letters 20110201 4


Arachidonic acid (AA) stimulates cell adhesion through a p38 mitogen activated protein kinase-mediated RhoA signaling pathway. Here we report that a proteomic screen following AA-treatment identified nucleolin, a multifunctional nucleolar protein, in a complex with the GTPase, RhoA, that also included the Rho kinase, ROCK. AA-stimulated cell adhesion was inhibited by expression of nucleolin-targeted shRNA and formation of the multiprotein complex was blocked by expression of dominant-negative Rh  ...[more]

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