2010
DOI: 10.1016/j.chom.2010.04.009
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A Yersinia Effector Protein Promotes Virulence by Preventing Inflammasome Recognition of the Type III Secretion System

Abstract: Pattern recognition receptors (PRRs) detect conserved microbial structures generally absent from eukaryotes. Bacterial pathogens commonly utilize pore-forming toxins or specialized secretion systems to deliver virulence factors that promote bacterial replication by modulating host cell physiology. Detection of these secretion systems or toxins by nucleotide-binding oligomerization domain leucine-rich-repeat proteins (NLRs) triggers the assembly of multiprotein complexes, termed inflammasomes, necessary for cas… Show more

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Cited by 264 publications
(366 citation statements)
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References 59 publications
(69 reference statements)
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“…The activity of the T3SS itself, as well as the activity of translocated effectors, triggers inflammasome activation, which promotes Yersinia clearance in vivo (36,80). However, Yersinia also inhibits inflammasome activation through the activities of YopK and YopM (36,38,39).…”
Section: Discussionmentioning
confidence: 99%
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“…The activity of the T3SS itself, as well as the activity of translocated effectors, triggers inflammasome activation, which promotes Yersinia clearance in vivo (36,80). However, Yersinia also inhibits inflammasome activation through the activities of YopK and YopM (36,38,39).…”
Section: Discussionmentioning
confidence: 99%
“…Successful bacterial pathogens have thus evolved strategies to mask these virulence factors from detection or to blunt the host response that is initiated (72)(73)(74). Indeed, a number of studies in several different systems have revealed that immune sensing of virulence factor activity promotes pathogen clearance (36,(75)(76)(77)(78)(79).…”
Section: Discussionmentioning
confidence: 99%
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