Biotrophic plant pathogens encounter a postinfection basal resistance layer controlled by the lipase-like protein enhanced disease susceptibility 1 (EDS1) and its sequence-related interaction partners, senescence-associated gene 101 (SAG101) and phytoalexin deficient 4 (PAD4). Maintainance of separate EDS1 family member clades through angiosperm evolution suggests distinct functional attributes. We report the Arabidopsis EDS1-SAG101 heterodimer crystal structure with juxtaposed N-terminal alpha/beta hydrolase and C-terminal alpha-helical EP domains aligned via a large conserved interface. Mutational analysis of the EDS1-SAG101 heterodimer and a derived EDS1-PAD4 structural model shows that EDS1 signals within mutually exclusive heterocomple...
Plants have evolved a multilayered immune system to counter pathogen attacks. EDS1 (Enhanced Disease...
Plants utilise intracellular nucleotide-binding, leucine-rich repeat (NLR) immune receptors to detec...
Plant innate immunity relies on nucleotide binding leucine-rich repeat receptors (NLRs) that recogni...
SummaryBiotrophic plant pathogens encounter a postinfection basal resistance layer controlled by the...
The EDS1 family of structurally unique lipase-like proteins EDS1, SAG101, and PAD4 evolved in seed p...
Arabidopsis pathogen effector-triggered immunity (ETI) is controlled by a family of three lipase-lik...
In plants, cellular innate immune responses are indispensable for defence against pathogens. Arabido...
International audienceHeterodimeric complexes containing the lipase-like protein ENHANCED DISEASE SU...
Plant innate immunity against invasive biotrophic pathogens depends on the intracellular defense reg...
Infection of cultures of food-crops with pathogens can be a serious threat to the worldwide food sup...
Heterodimeric complexes incorporating the lipase-like proteins EDS1 with PAD4 or SAG101 are central ...
Heterodimeric complexes incorporating the lipase-like proteins EDS1 with PAD4 or SAG101 are central ...
ENHANCED DISEASE SUSCEPTIBILITY1 (EDS1) and PHYTOALEXIN DEFICIENT4 (PAD4) are sequence-related lipas...
Plant intracellular nucleotide-binding/leucine-rich repeat (NLR) immune receptors are activated by p...
EDS1, PAD4, and SAG101 are common regulators of plant immunity against many pathogens. EDS1 interact...
Plants have evolved a multilayered immune system to counter pathogen attacks. EDS1 (Enhanced Disease...
Plants utilise intracellular nucleotide-binding, leucine-rich repeat (NLR) immune receptors to detec...
Plant innate immunity relies on nucleotide binding leucine-rich repeat receptors (NLRs) that recogni...
SummaryBiotrophic plant pathogens encounter a postinfection basal resistance layer controlled by the...
The EDS1 family of structurally unique lipase-like proteins EDS1, SAG101, and PAD4 evolved in seed p...
Arabidopsis pathogen effector-triggered immunity (ETI) is controlled by a family of three lipase-lik...
In plants, cellular innate immune responses are indispensable for defence against pathogens. Arabido...
International audienceHeterodimeric complexes containing the lipase-like protein ENHANCED DISEASE SU...
Plant innate immunity against invasive biotrophic pathogens depends on the intracellular defense reg...
Infection of cultures of food-crops with pathogens can be a serious threat to the worldwide food sup...
Heterodimeric complexes incorporating the lipase-like proteins EDS1 with PAD4 or SAG101 are central ...
Heterodimeric complexes incorporating the lipase-like proteins EDS1 with PAD4 or SAG101 are central ...
ENHANCED DISEASE SUSCEPTIBILITY1 (EDS1) and PHYTOALEXIN DEFICIENT4 (PAD4) are sequence-related lipas...
Plant intracellular nucleotide-binding/leucine-rich repeat (NLR) immune receptors are activated by p...
EDS1, PAD4, and SAG101 are common regulators of plant immunity against many pathogens. EDS1 interact...
Plants have evolved a multilayered immune system to counter pathogen attacks. EDS1 (Enhanced Disease...
Plants utilise intracellular nucleotide-binding, leucine-rich repeat (NLR) immune receptors to detec...
Plant innate immunity relies on nucleotide binding leucine-rich repeat receptors (NLRs) that recogni...