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Activation loop phosphorylation of a non-RD receptor kinase initiates plant innate immune signaling

Receptor kinases (RKs) are fundamental for extracellular sensing and regulate development and stress responses across kingdoms. In plants, leucine-rich repeat receptor kinases (LRR-RKs) are primarily peptide receptors that regulate responses to myriad internal and external stimuli. Phosphorylation o...

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Autores principales: Bender, Kyle W., Couto, Daniel, Kadota, Yasuhiro, Macho, Alberto P., Sklenar, Jan, Derbyshire, Paul, Bjornson, Marta, DeFalco, Thomas A., Petriello, Annalise, Font Farre, Maria, Schwessinger, Benjamin, Ntoukakis, Vardis, Stransfeld, Lena, Jones, Alexandra M. E., Menke, Frank L. H., Zipfel, Cyril
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8463890/
https://www.ncbi.nlm.nih.gov/pubmed/34531323
http://dx.doi.org/10.1073/pnas.2108242118
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author Bender, Kyle W.
Couto, Daniel
Kadota, Yasuhiro
Macho, Alberto P.
Sklenar, Jan
Derbyshire, Paul
Bjornson, Marta
DeFalco, Thomas A.
Petriello, Annalise
Font Farre, Maria
Schwessinger, Benjamin
Ntoukakis, Vardis
Stransfeld, Lena
Jones, Alexandra M. E.
Menke, Frank L. H.
Zipfel, Cyril
author_facet Bender, Kyle W.
Couto, Daniel
Kadota, Yasuhiro
Macho, Alberto P.
Sklenar, Jan
Derbyshire, Paul
Bjornson, Marta
DeFalco, Thomas A.
Petriello, Annalise
Font Farre, Maria
Schwessinger, Benjamin
Ntoukakis, Vardis
Stransfeld, Lena
Jones, Alexandra M. E.
Menke, Frank L. H.
Zipfel, Cyril
author_sort Bender, Kyle W.
collection PubMed
description Receptor kinases (RKs) are fundamental for extracellular sensing and regulate development and stress responses across kingdoms. In plants, leucine-rich repeat receptor kinases (LRR-RKs) are primarily peptide receptors that regulate responses to myriad internal and external stimuli. Phosphorylation of LRR-RK cytoplasmic domains is among the earliest responses following ligand perception, and reciprocal transphosphorylation between a receptor and its coreceptor is thought to activate the receptor complex. Originally proposed based on characterization of the brassinosteroid receptor, the prevalence of complex activation via reciprocal transphosphorylation across the plant RK family has not been tested. Using the LRR-RK ELONGATION FACTOR TU RECEPTOR (EFR) as a model, we set out to understand the steps critical for activating RK complexes. While the EFR cytoplasmic domain is an active protein kinase in vitro and is phosphorylated in a ligand-dependent manner in vivo, catalytically deficient EFR variants are functional in antibacterial immunity. These results reveal a noncatalytic role for EFR in triggering immune signaling and indicate that reciprocal transphoshorylation is not a ubiquitous requirement for LRR-RK complex activation. Rather, our analysis of EFR along with a detailed survey of the literature suggests a distinction between LRR-RKs with RD- versus non-RD protein kinase domains. Based on newly identified phosphorylation sites that regulate the activation state of the EFR complex in vivo, we propose that LRR-RK complexes containing a non-RD protein kinase may be regulated by phosphorylation-dependent conformational changes of the ligand-binding receptor, which could initiate signaling either allosterically or through driving the dissociation of negative regulators of the complex.
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spelling pubmed-84638902021-10-27 Activation loop phosphorylation of a non-RD receptor kinase initiates plant innate immune signaling Bender, Kyle W. Couto, Daniel Kadota, Yasuhiro Macho, Alberto P. Sklenar, Jan Derbyshire, Paul Bjornson, Marta DeFalco, Thomas A. Petriello, Annalise Font Farre, Maria Schwessinger, Benjamin Ntoukakis, Vardis Stransfeld, Lena Jones, Alexandra M. E. Menke, Frank L. H. Zipfel, Cyril Proc Natl Acad Sci U S A Biological Sciences Receptor kinases (RKs) are fundamental for extracellular sensing and regulate development and stress responses across kingdoms. In plants, leucine-rich repeat receptor kinases (LRR-RKs) are primarily peptide receptors that regulate responses to myriad internal and external stimuli. Phosphorylation of LRR-RK cytoplasmic domains is among the earliest responses following ligand perception, and reciprocal transphosphorylation between a receptor and its coreceptor is thought to activate the receptor complex. Originally proposed based on characterization of the brassinosteroid receptor, the prevalence of complex activation via reciprocal transphosphorylation across the plant RK family has not been tested. Using the LRR-RK ELONGATION FACTOR TU RECEPTOR (EFR) as a model, we set out to understand the steps critical for activating RK complexes. While the EFR cytoplasmic domain is an active protein kinase in vitro and is phosphorylated in a ligand-dependent manner in vivo, catalytically deficient EFR variants are functional in antibacterial immunity. These results reveal a noncatalytic role for EFR in triggering immune signaling and indicate that reciprocal transphoshorylation is not a ubiquitous requirement for LRR-RK complex activation. Rather, our analysis of EFR along with a detailed survey of the literature suggests a distinction between LRR-RKs with RD- versus non-RD protein kinase domains. Based on newly identified phosphorylation sites that regulate the activation state of the EFR complex in vivo, we propose that LRR-RK complexes containing a non-RD protein kinase may be regulated by phosphorylation-dependent conformational changes of the ligand-binding receptor, which could initiate signaling either allosterically or through driving the dissociation of negative regulators of the complex. National Academy of Sciences 2021-09-21 2021-09-16 /pmc/articles/PMC8463890/ /pubmed/34531323 http://dx.doi.org/10.1073/pnas.2108242118 Text en Copyright © 2021 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by/4.0/This open access article is distributed under Creative Commons Attribution License 4.0 (CC BY) (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Biological Sciences
Bender, Kyle W.
Couto, Daniel
Kadota, Yasuhiro
Macho, Alberto P.
Sklenar, Jan
Derbyshire, Paul
Bjornson, Marta
DeFalco, Thomas A.
Petriello, Annalise
Font Farre, Maria
Schwessinger, Benjamin
Ntoukakis, Vardis
Stransfeld, Lena
Jones, Alexandra M. E.
Menke, Frank L. H.
Zipfel, Cyril
Activation loop phosphorylation of a non-RD receptor kinase initiates plant innate immune signaling
title Activation loop phosphorylation of a non-RD receptor kinase initiates plant innate immune signaling
title_full Activation loop phosphorylation of a non-RD receptor kinase initiates plant innate immune signaling
title_fullStr Activation loop phosphorylation of a non-RD receptor kinase initiates plant innate immune signaling
title_full_unstemmed Activation loop phosphorylation of a non-RD receptor kinase initiates plant innate immune signaling
title_short Activation loop phosphorylation of a non-RD receptor kinase initiates plant innate immune signaling
title_sort activation loop phosphorylation of a non-rd receptor kinase initiates plant innate immune signaling
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8463890/
https://www.ncbi.nlm.nih.gov/pubmed/34531323
http://dx.doi.org/10.1073/pnas.2108242118
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