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Phosphorylation of Ser 402 impedes phosphatase activity of slingshot 1.


ABSTRACT: By using mass spectrometry, we have identified Ser 402 as a new phosphorylation site within the catalytic domain of human slingshot 1 (SSH1). Phosphorylation at this site inhibits substrate binding and, thus, phosphatase activity in vitro, resulting in enrichment of phosphorylated cofilin in monolayer cell culture. We further demonstrate that protein kinase D (PKD) is upstream from Ser 402 phosphorylation. Accordingly, expression of active PKD in Drosophila phenotypically mimics the loss of SSH activity by inducing accumulation of phosphorylated cofilin and filamentous actin. We thus identify a universal mechanism by which PKD controls SSH1 phosphatase activity.

SUBMITTER: Barisic S 

PROVIDER: S-EPMC3128274 | biostudies-literature | 2011 Jun

REPOSITORIES: biostudies-literature

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Phosphorylation of Ser 402 impedes phosphatase activity of slingshot 1.

Barišić Sandra S   Nagel Anja C AC   Franz-Wachtel Mirita M   Macek Boris B   Preiss Anette A   Link Gisela G   Maier Dieter D   Hausser Angelika A  

EMBO reports 20110428 6


By using mass spectrometry, we have identified Ser 402 as a new phosphorylation site within the catalytic domain of human slingshot 1 (SSH1). Phosphorylation at this site inhibits substrate binding and, thus, phosphatase activity in vitro, resulting in enrichment of phosphorylated cofilin in monolayer cell culture. We further demonstrate that protein kinase D (PKD) is upstream from Ser 402 phosphorylation. Accordingly, expression of active PKD in Drosophila phenotypically mimics the loss of SSH  ...[more]

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