Phosphorylation and activation of PINOID by the phospholipid signaling kinase 3-phosphoinositide-dependent protein kinase 1 (PDK1) in Arabidopsis
- 18 April 2006
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 103 (16) , 6404-6409
- https://doi.org/10.1073/pnas.0510283103
Abstract
Activity of the serine-threonine protein kinase PINOID (PID) has been implicated in the asymmetrical localization of the membrane-associated PINFORMED (PIN) family of auxin transport facilitators. However, the means by which PID regulates PIN protein distribution is unknown. We have used recombinant PID protein to dissect the regulation of PID activity in vitro. We demonstrate that intramolecular PID autophosphorylation is required for the ability of PID to phosphorylate an exogenous substrate. PID-like mammalian AGC kinases act in a phosphorylation cascade initiated by the phospholipid-associated kinase, 3-phosphoinositide-dependent protein kinase 1 (PDK1), which binds to the C-terminal hydrophobic PDK1-interacting fragment (PIF) domain found in PDK1 substrates. We find that Arabidopsis PDK1 interacts with PID, and that transphosphorylation by PDK1 increases PID autophosphorylation. We show that a PID activation loop serine is required for PDK1-dependent PID phosphorylation. This activation is rapid and requires the PIF domain. Cell extracts from flowers and seedling shoots dramatically increase PID phosphorylation in a tissue-specific manner. A PID protein variant in which the PIF domain was mutated failed to be activated by the seedling shoot extracts. PID immunoprecipitated from Arabidopsis cells in which PDK1 expression was inhibited by RNAi showed a dramatic reduction in transphosphorylation of myelin basic protein substrate. These results indicate that AtPDK1 is a potent enhancer of PID activity and provide evidence that phospholipid signaling may play a role in the signaling processes controlling polar auxin transport.Keywords
This publication has 34 references indexed in Scilit:
- A PINOID-Dependent Binary Switch in Apical-Basal PIN Polar Targeting Directs Auxin EffluxScience, 2004
- PIN-FORMED1andPINOIDregulate boundary formation and cotyledon development inArabidopsisembryogenesisDevelopment, 2004
- Local, Efflux-Dependent Auxin Gradients as a Common Module for Plant Organ FormationCell, 2003
- Regulation of phyllotaxis by polar auxin transportNature, 2003
- Efflux-dependent auxin gradients establish the apical–basal axis of ArabidopsisNature, 2003
- Signalling specificity of Ser/Thr protein kinases through docking-site-mediated interactionsBiochemical Journal, 2003
- Stress-induced Protein Phosphatase 2C Is a Negative Regulator of a Mitogen-activated Protein KinaseJournal of Biological Chemistry, 2003
- Interaction of a Kinesin-like Calmodulin-binding Protein with a Protein KinaseJournal of Biological Chemistry, 2000
- Molecular and Biochemical Evidence for the Involvement of Calcium/Calmodulin in Auxin ActionJournal of Biological Chemistry, 2000
- The Protein Kinase Family: Conserved Features and Deduced Phylogeny of the Catalytic DomainsScience, 1988