Abstract

Small GTPases of the Rab family are key regulators of intracellular transport. They are associated with the cytoplasmic surface of distinct exocytic and endocytic organelles and with transport vesicles connecting these compartments. Rab proteins are also present in the cytosol in the GDP-bound conformation complexed to Rab GDP dissociation inhibitor (RabGDI). Upon membrane association, RabGDI is released, and the Rab protein is converted into the GTP-bound form. In this paper we have investigated whether Rab5, which regulates the clathrin-coated vesicle-mediated pathway of endocytosis, can directly associate with the membrane of clathrin-coated vesicles (CCV) purified from bovine brain in vitro. We found that RabGDI can specifically deliver Rab5 but not Rab7, which is localized to late endosomes, to CCV. Furthermore, CCV contain a heat- and trypsin-sensitive activity that stimulates the dissociation of GDP from Rab5, but not from Rab7, and the subsequent binding of GTP. The activity was found to be associated with the CCV membrane but not with the coat components. CCV weakly stimulated GDP release from either post-translationally modified or unmodified Rab5 alone. However, maximal GDP dissociation stimulation required the presence of RabGDI, suggesting that the factor(s) responsible for the membrane association and GDP/GTP exchange of Rab5 recognize the protein complexed to RabGDI. These data demonstrate that CCV are competent for acquiring Rab5 and for converting the molecule into the GTP-bound active form.

Highlights

  • Small GTPases of the Rab family are key regulators of intracellular transport

  • In this paper we have investigated whether Rab5, which regulates the clathrin-coated vesicle-mediated pathway of endocytosis, can directly associate with the membrane of clathrin-coated vesicles (CCV) purified from bovine brain in vitro

  • Given the regulatory role of Rab5 in clathrin-coated vesicle-mediated endocytosis [12, 14], we investigated whether Rab GDP dissociation inhibitor (RabGDI) could deliver the protein directly to CCV purified from bovine brain as described [37,38]

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Summary

THE JOURNAL OF BIOLOGICAL CHEMISTRY

Vol 270, No 19, Issue of May 12, pp. 11257~11262, 1995 Printed in U.S.A. A GDP/GTP Exchange-stimulatory Activity for the Rab5-RabGDI Complex on Clathrin-coated Vesicles from Bovine Brain*. Maximal GDP dissociation stimulation required the presence of RabGDI, suggesting that the factor(s) responsible for the membrane association and GDP/GTP exchange of Rab recognize the protein complexed to RabGDI. These data demonstrate that CCV are competent for acquiring Rab and for converting the molecule into the GTP-bound active form. We detected a Rab5-specific GDP/GTP exchange activity on CCV, which required the presence of the Rab5-RabGDI complex for maximal stimulation These results demonstrate that Rab can bind to transport vesicles in vitro and that CCV contain one or more factors that promote release of RabGDI from Rab and conversion of the protein into the GTP-bound form

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