Abstract

The Arf6-specific exchange factor EFA6 coordinates membrane trafficking with actin cytoskeleton remodeling. It localizes to the plasma membrane where it catalyzes Arf6 activation and induces the formation of actin-based membrane ruffles. We have shown previously that the pleckstrin homology (PH) domain of EFA6 was responsible for its membrane localization. In this study we looked for the partners of the PH domain at the plasma membrane. Mutations of the conserved basic residues suspected to be involved in the binding to phosphoinositides redistribute EFA6-PH to the cytosol. In addition, phosphatidylinositol 4,5-bisphosphate (PI(4,5)P2) breakdown also leads to the solubilization of EFA6-PH. Direct binding measured by surface plasmon resonance gives an apparent affinity of approximately 0.5 microm EFA6-PH for PI(4,5)P2. Moreover, we observed in vitro that the catalytic activity of EFA6 is strongly increased by PI(4,5)P2. These results indicate that the plasma membrane localization of EFA6-PH is based on its interaction with PI(4,5)P2, and this interaction is necessary for an optimal catalytic activity of EFA6. Furthermore, we demonstrated by fluorescence recovery after photobleaching and Triton X-100 detergent solubility experiments that in addition to the phophoinositides, EFA6-PH is linked to the actin cytoskeleton. We observed both in vivo and in vitro that EFA6-PH interacts directly with F-actin. Finally, we demonstrated that EFA6 could bind simultaneously filamentous actin and phospholipids vesicles. Our results explain how the exchange factor EFA6 via its PH domain could coordinate at the plasma membrane actin cytoskeleton organization with membrane trafficking.

Highlights

  • The pleckstrin homology (PH) Domain Is Responsible for the Plasma Membrane Localization of EFA6—EFA6 is an Arf6-specific nucleotide exchange factor that is constituted of several structural domains

  • We observed that the deletion of the C terminus part including the PH domain and the coiled-coil motif led to a protein that was mostly detected in the cytosolic fraction (17)

  • This was confirmed by expressing the isolated PH domain fused to GFP, which localized to the plasma membrane to the full-length EFA6

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Summary

Introduction

19836 JOURNAL OF BIOLOGICAL CHEMISTRY (for review, see Ref. 1). Arf proteins are known to regulate the membrane recruitment to specific compartments of different protein coats necessary to generate membrane curvature and vesicle formation. We show that the EFA6-PH domain directly binds the F-actin and targets EFA6 at the plasma membrane into F-actin-enriched structures. To determine precisely which domain was involved in the plasma membrane localization, we expressed different mutants of EFA6 in BHK cells and analyzed their localization by confocal immunofluo-

Results
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