SummaryBacterial pathogens utilize pore-forming toxins or specialized secretion systems to deliver virulence factors to modulate host cell physiology and promote bacterial replication. Detection of these secretion systems or toxins, or their activities, by nucleotide-binding oligomerization domain leucine-rich repeat proteins (NLRs) triggers the assembly of inflammasomes, multiprotein complexes necessary for caspase-1 activation and host defense. Here we demonstrate that caspase-1 activation in response to the Yersinia type III secretion system (T3SS) requires the adaptor ASC and involves both NLRP3 and NLRC4 inflammasomes. Further, we identify a Yersinia type III secreted effector protein, YopK, which interacts with the T3SS translocon to ...
Animals have an immune system to fight off challenges from both viruses and bacteria. The first line...
Successful establishment of Yersinia infections requires the type III machinery, a protein transport...
Several Gram-negative pathogenic bacteria have evolved a complex protein secretion system termed the...
SummaryBacterial pathogens utilize pore-forming toxins or specialized secretion systems to deliver v...
Multicellular organisms constantly encounter microbes, ranging from beneficial to pathogenic. In ord...
Multicellular organisms constantly encounter microbes, ranging from beneficial to pathogenic. In ord...
Multicellular organisms constantly encounter microbes, ranging from beneficial to pathogenic. In ord...
ABSTRACT Type III secretion systems (T3SS) translocate effector proteins into target cells in order ...
Type III secretion systems (T3SS) translocate effector proteins into target cells in order to disrup...
Inflammasome-associated innate immune receptors sense host-cell targeting by the type III secretion ...
Inflammasome-associated innate immune receptors sense host-cell targeting by the type III secretion ...
ABSTRACT Yersinia are Gram-negative zoonotic bacteria that use a type III secretion system (T3SS) to...
Specialized protein translocation systems are used by many bacterial pathogens to deliver effector p...
Specialized protein translocation systems are used by many bacterial pathogens to deliver effector p...
Pathogenic bacteria possess virulence proteins which are exquisitely tuned to modulate an array of t...
Animals have an immune system to fight off challenges from both viruses and bacteria. The first line...
Successful establishment of Yersinia infections requires the type III machinery, a protein transport...
Several Gram-negative pathogenic bacteria have evolved a complex protein secretion system termed the...
SummaryBacterial pathogens utilize pore-forming toxins or specialized secretion systems to deliver v...
Multicellular organisms constantly encounter microbes, ranging from beneficial to pathogenic. In ord...
Multicellular organisms constantly encounter microbes, ranging from beneficial to pathogenic. In ord...
Multicellular organisms constantly encounter microbes, ranging from beneficial to pathogenic. In ord...
ABSTRACT Type III secretion systems (T3SS) translocate effector proteins into target cells in order ...
Type III secretion systems (T3SS) translocate effector proteins into target cells in order to disrup...
Inflammasome-associated innate immune receptors sense host-cell targeting by the type III secretion ...
Inflammasome-associated innate immune receptors sense host-cell targeting by the type III secretion ...
ABSTRACT Yersinia are Gram-negative zoonotic bacteria that use a type III secretion system (T3SS) to...
Specialized protein translocation systems are used by many bacterial pathogens to deliver effector p...
Specialized protein translocation systems are used by many bacterial pathogens to deliver effector p...
Pathogenic bacteria possess virulence proteins which are exquisitely tuned to modulate an array of t...
Animals have an immune system to fight off challenges from both viruses and bacteria. The first line...
Successful establishment of Yersinia infections requires the type III machinery, a protein transport...
Several Gram-negative pathogenic bacteria have evolved a complex protein secretion system termed the...