The pathogenic bacterium Shigella flexneri uses a type III secretion system to inject virulence factors from the bacterial cytosol directly into host cells. The machinery that identifies secretion substrates and controls the export of extracellular components and effector proteins consists of several inner-membrane and cytoplasmic proteins. One of the inner membrane components, Spa40, belongs to a family of proteins proposed to regulate the switching of substrate specificity of the export apparatus. We show that Spa40 is cleaved within the strictly conserved amino acid sequence NPTH and substitution of the proposed autocatalytic residue abolishes cleavage. Here we also report the crystal structure of the cytoplasmic complex Spa40(C) and com...
Shigella spp. are Gram-negative, non-motile bacterial pathogens that are the causative agent of baci...
Shigella flexneri is a gram negative bacterial pathogen and is the causative agent of bacillary dyse...
MxiG is a single-pass membrane protein that oligomerizes within the inner membrane ring of the Shige...
The pathogenic bacterium Shigella flexneri uses a type III secretion system to inject virulence fact...
The type III secretion apparatus (T3SA) is a central virulence factor of many Gram-negative bacteria...
Many Gram-negative pathogenic bacteria use a complex macromolecular machine, known as the type 3 sec...
AbstractMany Gram-negative pathogenic bacteria use a complex macromolecular machine, known as the ty...
The type III secretion apparatus (T3SA) is used by numerous Gram-negative pathogens to inject virule...
Type III secretion (TTS) systems are used by many Gram-negative pathogens to inject virulence protei...
Type III secretion systems (TTSS) are essential virulence determinants of many gram-negative bacteri...
The Type Three Secretion Systems (T3SSs) of Gram-negative bacteria, including Shigella, Salmonella, ...
Many pathogenic Gram-negative bacteria utilize type III secretion systems (T3SSs) to alter the norma...
Many Gram-negative pathogens, including Shigella flexneri, rely on a conserved type three secretion ...
The effectors of enterocyte invasion by Shigella are dependent on a type III secretion system that c...
The effectors of enterocyte invasion by Shigella are dependent on a type III secretion system that c...
Shigella spp. are Gram-negative, non-motile bacterial pathogens that are the causative agent of baci...
Shigella flexneri is a gram negative bacterial pathogen and is the causative agent of bacillary dyse...
MxiG is a single-pass membrane protein that oligomerizes within the inner membrane ring of the Shige...
The pathogenic bacterium Shigella flexneri uses a type III secretion system to inject virulence fact...
The type III secretion apparatus (T3SA) is a central virulence factor of many Gram-negative bacteria...
Many Gram-negative pathogenic bacteria use a complex macromolecular machine, known as the type 3 sec...
AbstractMany Gram-negative pathogenic bacteria use a complex macromolecular machine, known as the ty...
The type III secretion apparatus (T3SA) is used by numerous Gram-negative pathogens to inject virule...
Type III secretion (TTS) systems are used by many Gram-negative pathogens to inject virulence protei...
Type III secretion systems (TTSS) are essential virulence determinants of many gram-negative bacteri...
The Type Three Secretion Systems (T3SSs) of Gram-negative bacteria, including Shigella, Salmonella, ...
Many pathogenic Gram-negative bacteria utilize type III secretion systems (T3SSs) to alter the norma...
Many Gram-negative pathogens, including Shigella flexneri, rely on a conserved type three secretion ...
The effectors of enterocyte invasion by Shigella are dependent on a type III secretion system that c...
The effectors of enterocyte invasion by Shigella are dependent on a type III secretion system that c...
Shigella spp. are Gram-negative, non-motile bacterial pathogens that are the causative agent of baci...
Shigella flexneri is a gram negative bacterial pathogen and is the causative agent of bacillary dyse...
MxiG is a single-pass membrane protein that oligomerizes within the inner membrane ring of the Shige...