A versatile strategy to define the phosphorylation preferences of plant protein kinases and screen for putative substrates
Article first published online: 28 JUN 2008
DOI: 10.1111/j.1365-313X.2008.03488.x
© 2008 The Authors. Journal compilation © 2008 Blackwell Publishing Ltd
Additional Information
How to Cite
Vlad, F., Turk, B. E., Peynot, P., Leung, J. and Merlot, S. (2008), A versatile strategy to define the phosphorylation preferences of plant protein kinases and screen for putative substrates. The Plant Journal, 55: 104–117. doi: 10.1111/j.1365-313X.2008.03488.x
Publication History
- Issue published online: 28 JUN 2008
- Article first published online: 28 JUN 2008
- Received 15 November 2007; revised 28 February 2008; accepted 6 March 2008; published online 20 May 2008.
Keywords:
- phosphorylation;
- CDPK;
- SnRK;
- peptide array;
- dehydrin
Summary
Most signaling networks are regulated by reversible protein phosphorylation. The specificity of this regulation depends in part on the capacity of protein kinases to recognize and efficiently phosphorylate particular sequence motifs in their substrates. Sequenced plant genomes potentially encode over than 1000 protein kinases, representing 4% of the proteins, twice the proportion found in humans. This plethora of plant kinases requires the development of high-throughput strategies to identify their substrates. In this study, we have implemented a semi-degenerate peptide array screen to define the phosphorylation preferences of four kinases from Arabidopsis thaliana that are representative of the plant calcium-dependent protein kinase and Snf1-related kinase superfamily. We converted these quantitative data into position-specific scoring matrices to identify putative substrates of these kinases in silico in protein sequence databases. Our data show that these kinases display related but nevertheless distinct phosphorylation motif preferences, suggesting that they might share common targets but are likely to have specific substrates. Our analysis also reveals that a conserved motif found in the stress-related dehydrin protein family may be targeted by the SnRK2-10 kinase. Our results indicate that semi-degenerate peptide array screening is a versatile strategy that can be used on numerous plant kinases to facilitate identification of their substrates, and therefore represents a valuable tool to decipher phosphorylation-regulated signaling networks in plants.

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