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Type III Effector Activation via Nucleotide Binding, Phosphorylation, and Host Target Interaction

The Pseudomonas syringae type III effector protein avirulence protein B (AvrB) is delivered into plant cells, where it targets the Arabidopsis RIN4 protein (resistance to Pseudomonas maculicula protein 1 [RPM1]–interacting protein). RIN4 is a regulator of basal host defense responses. Targeting of R...

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Autores principales: Desveaux, Darrell, Singer, Alex U, Wu, Ai-Jiuan, McNulty, Brian C, Musselwhite, Laura, Nimchuk, Zachary, Sondek, John, Dangl, Jeffery L
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1839166/
https://www.ncbi.nlm.nih.gov/pubmed/17397263
http://dx.doi.org/10.1371/journal.ppat.0030048
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author Desveaux, Darrell
Singer, Alex U
Wu, Ai-Jiuan
McNulty, Brian C
Musselwhite, Laura
Nimchuk, Zachary
Sondek, John
Dangl, Jeffery L
author_facet Desveaux, Darrell
Singer, Alex U
Wu, Ai-Jiuan
McNulty, Brian C
Musselwhite, Laura
Nimchuk, Zachary
Sondek, John
Dangl, Jeffery L
author_sort Desveaux, Darrell
collection PubMed
description The Pseudomonas syringae type III effector protein avirulence protein B (AvrB) is delivered into plant cells, where it targets the Arabidopsis RIN4 protein (resistance to Pseudomonas maculicula protein 1 [RPM1]–interacting protein). RIN4 is a regulator of basal host defense responses. Targeting of RIN4 by AvrB is recognized by the host RPM1 nucleotide-binding leucine-rich repeat disease resistance protein, leading to accelerated defense responses, cessation of pathogen growth, and hypersensitive host cell death at the infection site. We determined the structure of AvrB complexed with an AvrB-binding fragment of RIN4 at 2.3 Å resolution. We also determined the structure of AvrB in complex with adenosine diphosphate bound in a binding pocket adjacent to the RIN4 binding domain. AvrB residues important for RIN4 interaction are required for full RPM1 activation. AvrB residues that contact adenosine diphosphate are also required for initiation of RPM1 function. Nucleotide-binding residues of AvrB are also required for its phosphorylation by an unknown Arabidopsis protein(s). We conclude that AvrB is activated inside the host cell by nucleotide binding and subsequent phosphorylation and, independently, interacts with RIN4. Our data suggest that activated AvrB, bound to RIN4, is indirectly recognized by RPM1 to initiate plant immune system function.
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spelling pubmed-18391662007-03-30 Type III Effector Activation via Nucleotide Binding, Phosphorylation, and Host Target Interaction Desveaux, Darrell Singer, Alex U Wu, Ai-Jiuan McNulty, Brian C Musselwhite, Laura Nimchuk, Zachary Sondek, John Dangl, Jeffery L PLoS Pathog Research Article The Pseudomonas syringae type III effector protein avirulence protein B (AvrB) is delivered into plant cells, where it targets the Arabidopsis RIN4 protein (resistance to Pseudomonas maculicula protein 1 [RPM1]–interacting protein). RIN4 is a regulator of basal host defense responses. Targeting of RIN4 by AvrB is recognized by the host RPM1 nucleotide-binding leucine-rich repeat disease resistance protein, leading to accelerated defense responses, cessation of pathogen growth, and hypersensitive host cell death at the infection site. We determined the structure of AvrB complexed with an AvrB-binding fragment of RIN4 at 2.3 Å resolution. We also determined the structure of AvrB in complex with adenosine diphosphate bound in a binding pocket adjacent to the RIN4 binding domain. AvrB residues important for RIN4 interaction are required for full RPM1 activation. AvrB residues that contact adenosine diphosphate are also required for initiation of RPM1 function. Nucleotide-binding residues of AvrB are also required for its phosphorylation by an unknown Arabidopsis protein(s). We conclude that AvrB is activated inside the host cell by nucleotide binding and subsequent phosphorylation and, independently, interacts with RIN4. Our data suggest that activated AvrB, bound to RIN4, is indirectly recognized by RPM1 to initiate plant immune system function. Public Library of Science 2007-03 2007-03-30 /pmc/articles/PMC1839166/ /pubmed/17397263 http://dx.doi.org/10.1371/journal.ppat.0030048 Text en © 2007 Desveaux et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Desveaux, Darrell
Singer, Alex U
Wu, Ai-Jiuan
McNulty, Brian C
Musselwhite, Laura
Nimchuk, Zachary
Sondek, John
Dangl, Jeffery L
Type III Effector Activation via Nucleotide Binding, Phosphorylation, and Host Target Interaction
title Type III Effector Activation via Nucleotide Binding, Phosphorylation, and Host Target Interaction
title_full Type III Effector Activation via Nucleotide Binding, Phosphorylation, and Host Target Interaction
title_fullStr Type III Effector Activation via Nucleotide Binding, Phosphorylation, and Host Target Interaction
title_full_unstemmed Type III Effector Activation via Nucleotide Binding, Phosphorylation, and Host Target Interaction
title_short Type III Effector Activation via Nucleotide Binding, Phosphorylation, and Host Target Interaction
title_sort type iii effector activation via nucleotide binding, phosphorylation, and host target interaction
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1839166/
https://www.ncbi.nlm.nih.gov/pubmed/17397263
http://dx.doi.org/10.1371/journal.ppat.0030048
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