Rabenosyn-5, a Novel Rab5 Effector, Is Complexed with Hvps45 and Recruited to Endosomes through a Fyve Finger Domain

Author:

Nielsen Erik1,Christoforidis Savvas1,Uttenweiler-Joseph Sandrine2,Miaczynska Marta1,Dewitte Frederique3,Wilm Matthias2,Hoflack Bernard3,Zerial Marino1

Affiliation:

1. Max-Planck-Institute for Molecular Cell Biology and Genetics, 01307 Dresden, Germany

2. European Molecular Biology Laboratory, 69117 Heidelberg, Germany

3. Institut de Biologie de Lille, Centre National de la Recherche Scientifique EP 525/Institut Pasteur de Lille 1, 59021 Lille, France

Abstract

Rab5 regulates endocytic membrane traffic by specifically recruiting cytosolic effector proteins to their site of action on early endosomal membranes. We have characterized a new Rab5 effector complex involved in endosomal fusion events. This complex includes a novel protein, Rabenosyn-5, which, like the previously characterized Rab5 effector early endosome antigen 1 (EEA1), contains an FYVE finger domain and is recruited in a phosphatidylinositol-3-kinase–dependent fashion to early endosomes. Rabenosyn-5 is complexed to the Sec1-like protein hVPS45. hVPS45 does not interact directly with Rab5, therefore Rabenosyn-5 serves as a molecular link between hVPS45 and the Rab5 GTPase. This property suggests that Rabenosyn-5 is a closer mammalian functional homologue of yeast Vac1p than EEA1. Furthermore, although both EEA1 and Rabenosyn-5 are required for early endosomal fusion, only overexpression of Rabenosyn-5 inhibits cathepsin D processing, suggesting that the two proteins play distinct roles in endosomal trafficking. We propose that Rab5-dependent formation of membrane domains enriched in phosphatidylinositol-3-phosphate has evolved as a mechanism for the recruitment of multiple effector proteins to mammalian early endosomes, and that these domains are multifunctional, depending on the differing activities of the effector proteins recruited.

Publisher

Rockefeller University Press

Subject

Cell Biology

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