Gram-negative bacterial pathogens rely on the type III secretion system to inject virulence proteins into host cells. These type III secreted "effector" proteins directly manipulate cellular processes to cause disease. Although the effector repertoires in different bacterial species are highly variable, the Yersinia outer protein J (YopJ) effector family is unique in that its members are produced by diverse animal and plant pathogens as well as a nonpathogenic microsymbiont. All YopJ family effectors share a conserved catalytic triad that is identical to that of the C55 family of cysteine proteases. However, an accumulating body of evidence demonstrates that many YopJ effectors modify their target proteins in hosts by acetylating specific s...
Pathogens and their hosts are engaged in an evolutionary arms race. Pathogen-derived effectors promo...
Animals have an immune system to fight off challenges from both viruses and bacteria. The first line...
Pathogens and their hosts are engaged in an evolutionary arms race. Pathogen-derived effectors promo...
Bacterial pathogens employ the type III secretion system to secrete and translocate effector protein...
Bacterial pathogens employ the type III secretion system to secrete and translocate effector protein...
Effectors secreted by the type III secretion system are essential for bacterial pathogenesis. Member...
AbstractA Yersinia effector known as YopT and a Pseudomonas avirulence protein known as AvrPphB defi...
The Yersinia outer protein J (YopJ) family of bacterial effectors depends on a novel acetyltransfera...
International audienceAuthor Summary / Plant and animal bacterial pathogens have evolved to produce ...
Virulence of Yersinia pestis in mammals requires the type III secretion system, which delivers seven...
Upon exposure to bacteria, eukaryotic cells activate signalling pathways that result in the increase...
Pathogenic bacteria possess virulence proteins which are exquisitely tuned to modulate an array of t...
SummaryBacterial pathogens utilize pore-forming toxins or specialized secretion systems to deliver v...
The Yersinia outer protein J (YopJ) family of effectors, which are present in many plant and animal ...
Gram-negative bacterial pathogens deliver a variety of virulence proteins through the type III secre...
Pathogens and their hosts are engaged in an evolutionary arms race. Pathogen-derived effectors promo...
Animals have an immune system to fight off challenges from both viruses and bacteria. The first line...
Pathogens and their hosts are engaged in an evolutionary arms race. Pathogen-derived effectors promo...
Bacterial pathogens employ the type III secretion system to secrete and translocate effector protein...
Bacterial pathogens employ the type III secretion system to secrete and translocate effector protein...
Effectors secreted by the type III secretion system are essential for bacterial pathogenesis. Member...
AbstractA Yersinia effector known as YopT and a Pseudomonas avirulence protein known as AvrPphB defi...
The Yersinia outer protein J (YopJ) family of bacterial effectors depends on a novel acetyltransfera...
International audienceAuthor Summary / Plant and animal bacterial pathogens have evolved to produce ...
Virulence of Yersinia pestis in mammals requires the type III secretion system, which delivers seven...
Upon exposure to bacteria, eukaryotic cells activate signalling pathways that result in the increase...
Pathogenic bacteria possess virulence proteins which are exquisitely tuned to modulate an array of t...
SummaryBacterial pathogens utilize pore-forming toxins or specialized secretion systems to deliver v...
The Yersinia outer protein J (YopJ) family of effectors, which are present in many plant and animal ...
Gram-negative bacterial pathogens deliver a variety of virulence proteins through the type III secre...
Pathogens and their hosts are engaged in an evolutionary arms race. Pathogen-derived effectors promo...
Animals have an immune system to fight off challenges from both viruses and bacteria. The first line...
Pathogens and their hosts are engaged in an evolutionary arms race. Pathogen-derived effectors promo...