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GTPase activating proteins (GAPs) of the centaurin family regulate the actin cytoskeleton and vesicle trafficking through inactivation of the ADP-ribosylation factor (ARF) family of small GTP-binding proteins. We report the functional characterisation of centaurin-
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JCS ePress
online publication date 6 Feb 2007
doi: 10.1242/jcs.03373
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120/5/792
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Research Article
PI-3-kinase-dependent membrane recruitment of centaurin-
2 is essential for its effect on ARF6-mediated actin cytoskeleton reorganisation
* Author for correspondence (e-mail: k.venkateswalru{at}bristol.ac.uk)
2, which is structurally related to the centaurin-
1 ARF6 GAP. Centaurin-
2 contains an N-terminal GAP domain followed by two pleckstrin homology (PH) domains (N-PH and C-PH). In vitro, GFP-centaurin-
2 specifically binds the phosphatidylinositol (PI) 3-kinase lipid products, PI 3,4-P2 and PI 3,4,5-P3 (PIP3), through its C-terminal PH domain. In agreement with this observation, GFP-centaurin-
2 was recruited to the plasma membrane from the cytosol in EGF-stimulated cells in a PI-3-kinase-dependent manner. Moreover, the C-PH domain is sufficient and necessary for membrane recruitment of centaurin-
2. Centaurin-
2 shows sustained kinetics of PI-3-kinase-mediated membrane recruitment in EGF-stimulated cells, owing to its binding to PI 3,4-P2. Centaurin-
2 prevents ARF6 translocation to, and cortical actin formation at, the plasma membrane, which are phenotypic indications for ARF6 activation in EGF-stimulated cells. Moreover, the constitutively active mutant of ARF6 reverses the effect of centaurin-
2 on cortical actin formation. The membrane targeted centaurin-
2 is constitutively active. Together, these studies indicate that centaurin-
2 is recruited in a sustained manner to the plasma membrane through binding to PI 3,4-P2 and thereby regulates actin reorganisation via ARF6.
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C. Rojas-Cartagena, P. Ortiz-Pineda, F. Ramirez-Gomez, E. C. Suarez-Castillo, V. Matos-Cruz, C. Rodriguez, H. Ortiz-Zuazaga, and J. E. Garcia-Arraras
Distinct profiles of expressed sequence tags during intestinal regeneration in the sea cucumber Holothuria glaberrima
Physiol Genomics,
October 19, 2007;
31(2):
203 - 215.
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© The Company of Biologists Ltd 2007