RIN4 is an intensively studied immune regulator in Arabidopsis and is involved in perception of microbial features outside and bacterial effectors inside plant cells. Furthermore, RIN4 is conserved in land plants and is targeted for posttranslational modifications by several virulence proteins from the bacterial pathogen Pseudomonas syringae. Despite the important roles of RIN4 in plant immune responses, its molecular function is not known. RIN4 is an intrinsically disordered protein (IDP), except at regions where pathogen-induced posttranslational modifications take place. IDP act as hubs for protein complex formation due to their ability to bind to multiple client proteins and, thus, are important players in signal transduction pathways. ...
SummaryPlants have evolved sophisticated surveillance systems to recognize pathogen effectors delive...
Plant pathogenic Pseudomonas syringae deliver type III effector proteins into the host cell, where t...
AbstractPlants have evolved a sophisticated innate immune system to recognize invading pathogens and...
In the absence of pathogen infection, plant effector-triggered immune (ETI) receptors are maintained...
Multiple bacterial effectors target RPM1-INTERACTING PROTEIN4 (RIN4), the biochemical modifications ...
SummaryIn the absence of pathogen infection, plant effector-triggered immune (ETI) receptors are mai...
AbstractIn Arabidopsis, RPM1 confers resistance against Pseudomonas syringae expressing either of tw...
Pathogens deploy virulence effectors to perturb host processes. Plants utilize intracellular resista...
In the absence of pathogen infection, plant effector-triggered immune (ETI) receptors are maintained...
AbstractType III pili deliver effector proteins (virulence factors) from bacterial pathogens to host...
AbstractA plant protein RIN4 is targeted and modified by bacterial pathogens as part of the disease ...
In plants, the protein RPM1-INTERACTING PROTEIN4 (RIN4) is a central regulator of both pattern-trigg...
Bacterial pathogens deliver type III effector proteins into the plant cell during infection. On susc...
The Arabidopsis RIN4 protein mediates interaction between the Pseudomonas syringae type III effector...
Plants evolved an immune system to recognize specific pathogens, like animals. Recognition of pathog...
SummaryPlants have evolved sophisticated surveillance systems to recognize pathogen effectors delive...
Plant pathogenic Pseudomonas syringae deliver type III effector proteins into the host cell, where t...
AbstractPlants have evolved a sophisticated innate immune system to recognize invading pathogens and...
In the absence of pathogen infection, plant effector-triggered immune (ETI) receptors are maintained...
Multiple bacterial effectors target RPM1-INTERACTING PROTEIN4 (RIN4), the biochemical modifications ...
SummaryIn the absence of pathogen infection, plant effector-triggered immune (ETI) receptors are mai...
AbstractIn Arabidopsis, RPM1 confers resistance against Pseudomonas syringae expressing either of tw...
Pathogens deploy virulence effectors to perturb host processes. Plants utilize intracellular resista...
In the absence of pathogen infection, plant effector-triggered immune (ETI) receptors are maintained...
AbstractType III pili deliver effector proteins (virulence factors) from bacterial pathogens to host...
AbstractA plant protein RIN4 is targeted and modified by bacterial pathogens as part of the disease ...
In plants, the protein RPM1-INTERACTING PROTEIN4 (RIN4) is a central regulator of both pattern-trigg...
Bacterial pathogens deliver type III effector proteins into the plant cell during infection. On susc...
The Arabidopsis RIN4 protein mediates interaction between the Pseudomonas syringae type III effector...
Plants evolved an immune system to recognize specific pathogens, like animals. Recognition of pathog...
SummaryPlants have evolved sophisticated surveillance systems to recognize pathogen effectors delive...
Plant pathogenic Pseudomonas syringae deliver type III effector proteins into the host cell, where t...
AbstractPlants have evolved a sophisticated innate immune system to recognize invading pathogens and...