Abstract

The small GTPase Ran regulates the interaction of transport receptors with a number of cellular cargo proteins. The high affinity binding of the GTP-bound form of Ran to import receptors promotes cargo release, whereas its binding to export receptors stabilizes their interaction with the cargo. This basic mechanism linked to the asymmetric distribution of the two nucleotide-bound forms of Ran between the nucleus and the cytoplasm generates a switch like mechanism controlling nucleo-cytoplasmic transport. Since 1999, we have known that after nuclear envelope breakdown (NEBD) Ran and the above transport receptors also provide a local control over the activity of factors driving spindle assembly and regulating other aspects of cell division. The identification and functional characterization of RanGTP mitotic targets is providing novel insights into mechanisms essential for cell division. Here we review our current knowledge on the RanGTP system and its regulation and we focus on the recent advances made through the characterization of its mitotic targets. We then briefly review the novel functions of the pathway that were recently described. Altogether, the RanGTP system has moonlighting functions exerting a spatial control over protein interactions that drive specific functions depending on the cellular context.

Highlights

  • Edited by: Patrizia Lavia, Institute of Molecular Biology and Pathology - CNR National Research Council of Italy, Italy

  • Since 1999, we have known that after nuclear envelope breakdown (NEBD) Ran and the above transport receptors provide a local control over the activity of factors driving spindle assembly and regulating other aspects of cell division

  • The identification of the role played by the RanGTP pathway during cell division occurred more than 15 years ago

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Summary

Introduction

RanGTP Pathway: From Nucleo-Cytoplasmic Transport to Spindle Assembly and Beyond. Since 1999, we have known that after nuclear envelope breakdown (NEBD) Ran and the above transport receptors provide a local control over the activity of factors driving spindle assembly and regulating other aspects of cell division.

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