The AvrM Effector from Flax Rust Has a Structured C-Terminal Domain and Interacts Directly with the M Resistance Protein
Open Access
- 1 January 2010
- journal article
- research article
- Published by Scientific Societies in Molecular Plant-Microbe Interactions®
- Vol. 23 (1) , 49-57
- https://doi.org/10.1094/mpmi-23-1-0049
Abstract
In plant immunity, recognition of pathogen effectors by plant resistance proteins leads to the activation of plant defenses and a localized cell death response. The AvrM effector from flax rust is a small secreted protein that is recognized by the M resistance protein in flax. Here, we investigate the mechanism of M–AvrM recognition and show that these two proteins directly interact in a yeast two-hybrid assay, and that this interaction correlates with the recognition specificity observed for each of the different AvrM variants. We further characterize this interaction by demonstrating that the C-terminal domain of AvrM is required for M-dependent cell death, and show that this domain also interacts with the M protein in yeast. We investigate the role of C-terminal differences among the different AvrM proteins for their involvement in this interaction and establish that M recognition is hindered by an additional 34 amino acids present at the C terminus of several AvrM variants. Structural characterization of recombinant AvrM-A protein revealed a globular C-terminal domain that dimerizes.Keywords
This publication has 32 references indexed in Scilit:
- Entering and breaking: virulence effector proteins of oomycete plant pathogensCellular Microbiology, 2009
- Natural variation reveals key amino acids in a downy mildew effector that alters recognition specificity by an Arabidopsis resistance geneMolecular Plant Pathology, 2008
- Chloroplastic Protein NRIP1 Mediates Innate Immune Receptor Recognition of a Viral EffectorCell, 2008
- Firefly Luciferase Complementation Imaging Assay for Protein-Protein Interactions in PlantsPlant Physiology, 2007
- Crystal Structures of Flax Rust Avirulence Proteins AvrL567-A and -D Reveal Details of the Structural Basis for Flax Disease Resistance SpecificityPlant Cell, 2007
- Purification of the M flax-rust resistance protein expressed in Pichia pastorisThe Plant Journal, 2007
- Direct protein interaction underlies gene-for-gene specificity and coevolution of the flax resistance genes and flax rust avirulence genesProceedings of the National Academy of Sciences, 2006
- Host-Microbe Interactions: Shaping the Evolution of the Plant Immune ResponsePublished by Elsevier ,2006
- Understanding the Functions of Plant Disease Resistance ProteinsAnnual Review of Plant Biology, 2003
- Arabidopsis RIN4 Is a Target of the Type III Virulence Effector AvrRpt2 and Modulates RPS2-Mediated ResistanceCell, 2003