The Yersinia pestis virulence factor YopJ is a potent inhibitor of the NF-kappaB and MAPK signalling pathways, however, its molecular mechanism and relevance to pathogenesis are the subject of much debate. In this report, we characterize the effects of this type III effector protein on bone fide signalling events downstream of Toll-like receptors (TLRs), critical sensors in innate immunity. YopJ inhibited TLR-mediated NF-kappaB and MAP kinase activation, as suggested by previous studies. In addition, induction of the TLR-mediated interferon response was blocked by YopJ, indicating that YopJ also inhibits IRF3 signalling. Examination of the NF-kappaB signalling pathway in detail suggested that YopJ acts at the level of TAK1 (MAP3K7) activati...
<div><p>Type III secretion systems (T3SS) are central virulence factors for many pathogenic Gram-neg...
ABSTRACT Type III secretion systems (T3SS) translocate effector proteins into target cells in order ...
<div><p>Yersinia outer protein J (YopJ) is a type III secretion system (T3SS) effector of pathogenic...
Upon exposure to bacteria, eukaryotic cells activate signalling pathways that result in the increase...
A type III secretion system (T3SS) in pathogenic Yersinia species functions to translocate Yop effec...
The Gram-negative bacteria Yersinia pestis, causative agent of plague, is extremely virulent. One me...
Yersinia pestis evades immune responses in part by injecting into host immune cells several effector...
Yersinia species are bacterial pathogens that can cause plague and intestinal diseases after invadin...
The Yersinia plasmid-encoded Yop virulon enables extracellular adhering bacteria to deliver toxic ef...
Multicellular organisms constantly encounter microbes, ranging from beneficial to pathogenic. In ord...
Many pathogens interfere with the activation of innate immune signaling responses. However, pro-surv...
Type III secretion systems (T3SS) are central virulence factors for many pathogenic Gram-negative ba...
Multicellular organisms constantly encounter microbes, ranging from beneficial to pathogenic. In ord...
International audienceYersinia pseudotuberculosis is an enteropathogenic bacteria that disrupts the ...
Gram-negative bacterial pathogens rely on the type III secretion system to inject virulence proteins...
<div><p>Type III secretion systems (T3SS) are central virulence factors for many pathogenic Gram-neg...
ABSTRACT Type III secretion systems (T3SS) translocate effector proteins into target cells in order ...
<div><p>Yersinia outer protein J (YopJ) is a type III secretion system (T3SS) effector of pathogenic...
Upon exposure to bacteria, eukaryotic cells activate signalling pathways that result in the increase...
A type III secretion system (T3SS) in pathogenic Yersinia species functions to translocate Yop effec...
The Gram-negative bacteria Yersinia pestis, causative agent of plague, is extremely virulent. One me...
Yersinia pestis evades immune responses in part by injecting into host immune cells several effector...
Yersinia species are bacterial pathogens that can cause plague and intestinal diseases after invadin...
The Yersinia plasmid-encoded Yop virulon enables extracellular adhering bacteria to deliver toxic ef...
Multicellular organisms constantly encounter microbes, ranging from beneficial to pathogenic. In ord...
Many pathogens interfere with the activation of innate immune signaling responses. However, pro-surv...
Type III secretion systems (T3SS) are central virulence factors for many pathogenic Gram-negative ba...
Multicellular organisms constantly encounter microbes, ranging from beneficial to pathogenic. In ord...
International audienceYersinia pseudotuberculosis is an enteropathogenic bacteria that disrupts the ...
Gram-negative bacterial pathogens rely on the type III secretion system to inject virulence proteins...
<div><p>Type III secretion systems (T3SS) are central virulence factors for many pathogenic Gram-neg...
ABSTRACT Type III secretion systems (T3SS) translocate effector proteins into target cells in order ...
<div><p>Yersinia outer protein J (YopJ) is a type III secretion system (T3SS) effector of pathogenic...