The Journal of Cell Biology · 2011 · 64 citations · 19 references
Regulated spindle orientation maintains epithelial tissue integrity and stem cell asymmetric cell division. In Drosophila melanogaster neural stem cells (neuroblasts), the scaffolding protein Canoe (Afadin/Af-6 in mammals) regulates spindle orientation, but its protein interaction partners and mechanism of action are unknown. In this paper, we use our recently developed induced cell polarity system to dissect the molecular mechanism of Canoe-mediated spindle orientation. We show that a previously uncharacterized portion of Canoe directly binds the Partner of Inscuteable (Pins) tetratricopeptide repeat (TPR) domain. The Canoe-Pins(TPR) interaction recruits Canoe to the cell cortex and is required for activation of the Pins(TPR)-Mud (nuclear mitotic apparatus in mammals) spindle orientation pathway. We show that the Canoe Ras-association (RA) domains directly bind RanGTP and that both the Canoe(RA) domains and RanGTP are required to recruit Mud to the cortex and activate the Pins/Mud/dynein spindle orientation pathway.
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Importin β Is a Mitotic Target of the Small GTPase Ran in Spindle Assembly
Maxence V. Nachury, Thomas J. Maresca, Wendy C. Salmon et al. · Cell · 2001 · 378 citations · Full text
Role of Importin-β in Coupling Ran to Downstream Targets in Microtubule Assembly
Christiane Wiese, Andrew Wilde, Mary Shannon Moore et al. · Science · 2001 · 319 citations
The RanGTP gradient – a GPS for the mitotic spindle
Petr Kaláb, Rebecca Heald · Journal of Cell Science · 2008 · 296 citations · Full text