YopH is an exceptionally active tyrosine phosphatase that is essential for virulence of Yersinia pestis, the bacterium causing plague. YopH breaks down signal transduction mechanisms in immune cells and inhibits the immune response. Only a few substrates for YopH have been characterized so far, for instance p130Cas and Fyb, but in view of YopH potency and the great number of proteins involved in signalling pathways it is quite likely that more proteins are substrates of this phosphatase. In this respect, we show here YopH interaction with several proteins not shown before, such as Gab1, Gab2, p85, and Vav and analyse the domains of YopH involved in these interactions. Furthermore, we show that Gab1, Gab2 and Vav are not dephosphorylated by ...
Pathogenic species of Yersinia utilize a type III secretion apparatus to translocate six effector pr...
BACKGROUND: Pathogenic yersiniae inject several effector proteins (Yops) into host cells, which subv...
Human pathogenic Yersinia resist host defenses, in part through the expression and delivery of a set...
Producción CientíficaYopH is an exceptionally active tyrosine phosphatase that is essential for viru...
YopH is a protein tyrosine phosphatase and an essential virulence determinant of the pathogenic bact...
Unrestricted protein tyrosine phosphatase (PTPase) activity may play a role in pathogenesis. For ins...
SummaryIdentifying molecular targets of Yersinia virulence effectors, or Yops, during animal infecti...
The enteropathogenic bacterium Yersinia pseudotuberculosis binds to β1 integrins on a host cell via ...
Bacterial pathogens employ unique ways to interact with their animal and plant hosts. A common strat...
Yersinia bacteria cause a range of human diseases, including yersiniosis, Far East scarlet-like feve...
Pathogenic strains of Yersinia deploy a type III secretion system to inject the potent tyrosine phos...
A 70-kb virulence plasmid (sometimes called pYV) enables Yersinia spp. to survive and multiply in th...
AbstractA Yersinia effector known as YopT and a Pseudomonas avirulence protein known as AvrPphB defi...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/72457/1/j.0950-382x.2001.02711.x.pd
Yersinia pestis, the ethological agent of plague, uses the type III secretion system (T3SS) to injec...
Pathogenic species of Yersinia utilize a type III secretion apparatus to translocate six effector pr...
BACKGROUND: Pathogenic yersiniae inject several effector proteins (Yops) into host cells, which subv...
Human pathogenic Yersinia resist host defenses, in part through the expression and delivery of a set...
Producción CientíficaYopH is an exceptionally active tyrosine phosphatase that is essential for viru...
YopH is a protein tyrosine phosphatase and an essential virulence determinant of the pathogenic bact...
Unrestricted protein tyrosine phosphatase (PTPase) activity may play a role in pathogenesis. For ins...
SummaryIdentifying molecular targets of Yersinia virulence effectors, or Yops, during animal infecti...
The enteropathogenic bacterium Yersinia pseudotuberculosis binds to β1 integrins on a host cell via ...
Bacterial pathogens employ unique ways to interact with their animal and plant hosts. A common strat...
Yersinia bacteria cause a range of human diseases, including yersiniosis, Far East scarlet-like feve...
Pathogenic strains of Yersinia deploy a type III secretion system to inject the potent tyrosine phos...
A 70-kb virulence plasmid (sometimes called pYV) enables Yersinia spp. to survive and multiply in th...
AbstractA Yersinia effector known as YopT and a Pseudomonas avirulence protein known as AvrPphB defi...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/72457/1/j.0950-382x.2001.02711.x.pd
Yersinia pestis, the ethological agent of plague, uses the type III secretion system (T3SS) to injec...
Pathogenic species of Yersinia utilize a type III secretion apparatus to translocate six effector pr...
BACKGROUND: Pathogenic yersiniae inject several effector proteins (Yops) into host cells, which subv...
Human pathogenic Yersinia resist host defenses, in part through the expression and delivery of a set...