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Kinase activity of SOBIR1 and BAK1 is required for immune signalling

Leucine‐rich repeat‐receptor‐like proteins (LRR‐RLPs) and LRR‐receptor‐like kinases (LRR‐RLKs) trigger immune signalling to promote plant resistance against pathogens. LRR‐RLPs lack an intracellular kinase domain, and several of these receptors have been shown to constitutively interact with the LRR...

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Autores principales: van der Burgh, Aranka M., Postma, Jelle, Robatzek, Silke, Joosten, Matthieu H. A. J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6637861/
https://www.ncbi.nlm.nih.gov/pubmed/30407725
http://dx.doi.org/10.1111/mpp.12767
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author van der Burgh, Aranka M.
Postma, Jelle
Robatzek, Silke
Joosten, Matthieu H. A. J.
author_facet van der Burgh, Aranka M.
Postma, Jelle
Robatzek, Silke
Joosten, Matthieu H. A. J.
author_sort van der Burgh, Aranka M.
collection PubMed
description Leucine‐rich repeat‐receptor‐like proteins (LRR‐RLPs) and LRR‐receptor‐like kinases (LRR‐RLKs) trigger immune signalling to promote plant resistance against pathogens. LRR‐RLPs lack an intracellular kinase domain, and several of these receptors have been shown to constitutively interact with the LRR‐RLK Suppressor of BIR1‐1/EVERSHED (SOBIR1/EVR) to form signalling‐competent receptor complexes. Ligand perception by LRR‐RLPs initiates recruitment of the co‐receptor BRI1‐Associated Kinase 1/Somatic Embryogenesis Receptor Kinase 3 (BAK1/SERK3) to the LRR‐RLP/SOBIR1 complex, thereby activating LRR‐RLP‐mediated immunity. We employed phosphorylation analysis of in planta‐produced proteins, live cell imaging, gene silencing and co‐immunoprecipitation to investigate the roles of SOBIR1 and BAK1 in immune signalling. We show that Arabidopsis thaliana (At) SOBIR1, which constitutively activates immune responses when overexpressed in planta, is highly phosphorylated. Moreover, in addition to the kinase activity of SOBIR1 itself, kinase‐active BAK1 is essential for AtSOBIR1‐induced constitutive immunity and for the phosphorylation of AtSOBIR1. Furthermore, the defence response triggered by the tomato LRR‐RLP Cf‐4 on perception of Avr4 from the extracellular pathogenic fungus Cladosporium fulvum is dependent on kinase‐active BAK1. We argue that, in addition to the trans‐autophosphorylation of SOBIR1, it is likely that SOBIR1 and BAK1 transphosphorylate, and thereby activate the receptor complex. The signalling‐competent cell surface receptor complex subsequently activates downstream cytoplasmic signalling partners to initiate RLP‐mediated immunity.
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spelling pubmed-66378612019-09-16 Kinase activity of SOBIR1 and BAK1 is required for immune signalling van der Burgh, Aranka M. Postma, Jelle Robatzek, Silke Joosten, Matthieu H. A. J. Mol Plant Pathol Original Articles Leucine‐rich repeat‐receptor‐like proteins (LRR‐RLPs) and LRR‐receptor‐like kinases (LRR‐RLKs) trigger immune signalling to promote plant resistance against pathogens. LRR‐RLPs lack an intracellular kinase domain, and several of these receptors have been shown to constitutively interact with the LRR‐RLK Suppressor of BIR1‐1/EVERSHED (SOBIR1/EVR) to form signalling‐competent receptor complexes. Ligand perception by LRR‐RLPs initiates recruitment of the co‐receptor BRI1‐Associated Kinase 1/Somatic Embryogenesis Receptor Kinase 3 (BAK1/SERK3) to the LRR‐RLP/SOBIR1 complex, thereby activating LRR‐RLP‐mediated immunity. We employed phosphorylation analysis of in planta‐produced proteins, live cell imaging, gene silencing and co‐immunoprecipitation to investigate the roles of SOBIR1 and BAK1 in immune signalling. We show that Arabidopsis thaliana (At) SOBIR1, which constitutively activates immune responses when overexpressed in planta, is highly phosphorylated. Moreover, in addition to the kinase activity of SOBIR1 itself, kinase‐active BAK1 is essential for AtSOBIR1‐induced constitutive immunity and for the phosphorylation of AtSOBIR1. Furthermore, the defence response triggered by the tomato LRR‐RLP Cf‐4 on perception of Avr4 from the extracellular pathogenic fungus Cladosporium fulvum is dependent on kinase‐active BAK1. We argue that, in addition to the trans‐autophosphorylation of SOBIR1, it is likely that SOBIR1 and BAK1 transphosphorylate, and thereby activate the receptor complex. The signalling‐competent cell surface receptor complex subsequently activates downstream cytoplasmic signalling partners to initiate RLP‐mediated immunity. John Wiley and Sons Inc. 2019-01-02 /pmc/articles/PMC6637861/ /pubmed/30407725 http://dx.doi.org/10.1111/mpp.12767 Text en © 2018 The Authors. Molecular Plant Pathology published by BSPP and John Wiley & Sons Ltd This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
van der Burgh, Aranka M.
Postma, Jelle
Robatzek, Silke
Joosten, Matthieu H. A. J.
Kinase activity of SOBIR1 and BAK1 is required for immune signalling
title Kinase activity of SOBIR1 and BAK1 is required for immune signalling
title_full Kinase activity of SOBIR1 and BAK1 is required for immune signalling
title_fullStr Kinase activity of SOBIR1 and BAK1 is required for immune signalling
title_full_unstemmed Kinase activity of SOBIR1 and BAK1 is required for immune signalling
title_short Kinase activity of SOBIR1 and BAK1 is required for immune signalling
title_sort kinase activity of sobir1 and bak1 is required for immune signalling
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6637861/
https://www.ncbi.nlm.nih.gov/pubmed/30407725
http://dx.doi.org/10.1111/mpp.12767
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