Gαi generates multiple Pins activation states to link cortical polarity and spindle orientation in Drosophila neuroblasts
- 4 September 2007
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 104 (36), 14306-14311
- https://doi.org/10.1073/pnas.0701812104
Abstract
Drosophila neuroblasts divide asymmetrically by aligning their mitotic spindle with cortical cell polarity to generate distinct sibling cell types. Neuroblasts asymmetrically localize Galphai, Pins, and Mud proteins; Pins/Galphai direct cortical polarity, whereas Mud is required for spindle orientation. It is currently unknown how Galphai-Pins-Mud binding is regulated to link cortical polarity with spindle orientation. Here, we show that Pins forms a "closed" state via intramolecular GoLoco-tetratricopeptide repeat (TPR) interactions, which regulate Mud binding. Biochemical, genetic, and live imaging experiments show that Galphai binds to the first of three Pins GoLoco motifs to recruit Pins to the apical cortex without "opening" Pins or recruiting Mud. However, Galphai and Mud bind cooperatively to the Pins GoLocos 2/3 and tetratricopeptide repeat domains, respectively, thereby restricting Pins-Mud interaction to the apical cortex and fixing spindle orientation. We conclude that Pins has multiple activity states that generate cortical polarity and link it with mitotic spindle orientation.Keywords
This publication has 32 references indexed in Scilit:
- Distinct roles of Gαi and Gβ13F subunits of the heterotrimeric G protein complex in the mediation of Drosophila neuroblast asymmetric divisionsThe Journal of cell biology, 2003
- Translation of Polarity Cues into Asymmetric Spindle Positioning in Caenorhabditis elegans EmbryosScience, 2003
- Asymmetrically Distributed C. elegans Homologs of AGS3/PINS Control Spindle Position in the Early EmbryoCurrent Biology, 2003
- A complex of LIN-5 and GPR proteins regulates G protein signaling and spindle function inC. elegansGenes & Development, 2003
- LGN Blocks the Ability of NuMA to Bind and Stabilize MicrotubulesCurrent Biology, 2002
- The modular logic of signaling proteins: building allosteric switches from simple binding domainsCurrent Opinion in Structural Biology, 2002
- A protein trap strategy to detect GFP-tagged proteins expressed from their endogenous loci in DrosophilaProceedings of the National Academy of Sciences, 2001
- Integration of Multiple Signals Through Cooperative Regulation of the N-WASP-Arp2/3 ComplexScience, 2000
- Rapsynoid/Partner of Inscuteable Controls Asymmetric Division of Larval Neuroblasts inDrosophilaJournal of Neuroscience, 2000
- Mushroom body defect , a gene involved in the control of neuroblast proliferation in Drosophila , encodes a coiled–coil proteinProceedings of the National Academy of Sciences, 2000