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Crystal structure of the Melampsora lini effector AvrP reveals insights into a possible nuclear function and recognition by the flax disease resistance protein P
Authors:Xiaoxiao Zhang  Nadya Farah  Laura Rolston  Daniel J. Ericsson  Ann‐Maree Catanzariti  Maud Bernoux  Thomas Ve  Katerina Bendak  Chunhong Chen  Joel P. Mackay  Gregory J. Lawrence  Adrienne Hardham  Jeffrey G. Ellis  Simon J. Williams  Peter N. Dodds  David A. Jones  Bostjan Kobe
Affiliation:1. School of Chemistry and Molecular Biosciences, Australian Infectious Diseases Research Centre and Institute for Molecular Bioscience, University of Queensland, Brisbane, Queensland 4072, Australia;2. Commonwealth Scientific and Industrial Research Organisation Agriculture and Food, Canberra, Australian Capital Territory 2601, Australia;3. Division of Plant Sciences, Research School of Biology, Australian National University, Acton, Australian Capital Territory 2601, Australia;4. Australian Synchrotron, Macromolecular crystallography, Clayton, Victoria 3168, Australia;5. Institute for Glycomics, Griffith University, Southport, Queensland 4222, Australia;6. School of Molecular Bioscience, University of Sydney, Sydney, New South Wales 2006, Australia
Abstract:The effector protein AvrP is secreted by the flax rust fungal pathogen (Melampsora lini) and recognized specifically by the flax (Linum usitatissimum) P disease resistance protein, leading to effector‐triggered immunity. To investigate the biological function of this effector and the mechanisms of specific recognition by the P resistance protein, we determined the crystal structure of AvrP. The structure reveals an elongated zinc‐finger‐like structure with a novel interleaved zinc‐binding topology. The residues responsible for zinc binding are conserved in AvrP effector variants and mutations of these motifs result in a loss of P‐mediated recognition. The first zinc‐coordinating region of the structure displays a positively charged surface and shows some limited similarities to nucleic acid‐binding and chromatin‐associated proteins. We show that the majority of the AvrP protein accumulates in the plant nucleus when transiently expressed in Nicotiana benthamiana cells, suggesting a nuclear pathogenic function. Polymorphic residues in AvrP and its allelic variants map to the protein surface and could be associated with differences in recognition specificity. Several point mutations of residues on the non‐conserved surface patch result in a loss of recognition by P, suggesting that these residues are required for recognition.
Keywords:crystal structure  effector‐triggered immunity  flax rust (Melampsora lini) effector  NLR [nucleotide‐binding and oligomerization domain (NOD)‐like receptor  nucleotide‐binding/leucine‐rich repeat receptor]  nuclear localization  plant disease resistance  zinc finger
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