| Literature DB >> 26769563 |
Sharon C Mithoe1, Christina Ludwig2, Michiel J C Pel1, Mara Cucinotta1, Alberto Casartelli1, Malick Mbengue3, Jan Sklenar3, Paul Derbyshire3, Silke Robatzek3, Corné M J Pieterse1, Ruedi Aebersold4, Frank L H Menke5.
Abstract
Pattern recognition receptors (PRRs) play a key role in plant and animal innate immunity. PRR binding of their cognate ligand triggers a signaling network and activates an immune response. Activation of PRR signaling must be controlled prior to ligand binding to prevent spurious signaling and immune activation. Flagellin perception in Arabidopsis through FLAGELLIN-SENSITIVE 2 (FLS2) induces the activation of mitogen-activated protein kinases (MAPKs) and immunity. However, the precise molecular mechanism that connects activated FLS2 to downstream MAPK cascades remains unknown. Here, we report the identification of a differentially phosphorylated MAP kinase kinase kinase that also interacts with FLS2. Using targeted proteomics and functional analysis, we show that MKKK7 negatively regulates flagellin-triggered signaling and basal immunity and this requires phosphorylation of MKKK7 on specific serine residues. MKKK7 attenuates MPK6 activity and defense gene expression. Moreover, MKKK7 suppresses the reactive oxygen species burst downstream of FLS2, suggesting that MKKK7-mediated attenuation of FLS2 signaling occurs through direct modulation of the FLS2 complex.Entities:
Keywords: Arabidopsis; innate immunity; phosphorylation; signaling; targeted proteomics
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Year: 2016 PMID: 26769563 PMCID: PMC4772993 DOI: 10.15252/embr.201540806
Source DB: PubMed Journal: EMBO Rep ISSN: 1469-221X Impact factor: 8.807