The enzyme TcpG is a periplasmic protein produced by the Gram-negative pathogen Vibrio cholerae. TcpG is essential for the production of ToxR-regulated proteins, including virulence-factor pilus proteins and cholera toxin, and is therefore a target for the development of a new class of anti-virulence drugs. Here, the 1.2 Å resolution crystal structure of TcpG is reported using a cryocooled crystal. This structure is compared with a previous crystal structure determined at 2.1 Å resolution from data measured at room temperature. The new crystal structure is the first DsbA crystal structure to be solved at a sufficiently high resolution to allow the inclusion of refined H atoms in the model. The redox properties of TcpG are also reported, all...
Bacterial DsbA enzymes catalyze oxidative folding of virulence factors, and have been identified as ...
Bacterial DsbA enzymes catalyze oxidative folding of virulence factors, and have been identified as ...
Background: The redox proteins that incorporate a thioredoxin fold have diverse properties and funct...
Since its discovery in 1991, the bacterial periplasmic oxidative folding catalyst DsbA has been the ...
The disulfide bond forming DsbA enzymes and their DsbB interaction partners are attractive targets f...
DsbA is a protein‐folding catalyst from the periplasm of Escherichia coli that interacts with newly ...
t Disulfide-bond (Dsb) proteins are a family of redox proteins containing a Cys-X-X-Cys motif. They ...
International audienceBacterial virulence depends on the correct folding of surface-exposed proteins...
The three-dimensional structure of reduced DsbA from Escherichia coli in aqueous solution has been d...
This paper provides a description of the surface topography of DsbA, the bacterial disulfide-bond fo...
The disulfide bond (DSB) forming system and in particular DsbA, is a key bacterial oxidative folding...
Pathogens require protein-folding enzymes to produce functional virulence determinants. These foldas...
SummaryOxidation of cysteine pairs to disulfide requires cellular factors present in the bacterial p...
The biological kingdoms have evolved elaborate systems that ensure the catalysis of protein disulfid...
The Gram negative bacteria Chlamydia trachomatis is an obligate intracellular human pathogen that ca...
Bacterial DsbA enzymes catalyze oxidative folding of virulence factors, and have been identified as ...
Bacterial DsbA enzymes catalyze oxidative folding of virulence factors, and have been identified as ...
Background: The redox proteins that incorporate a thioredoxin fold have diverse properties and funct...
Since its discovery in 1991, the bacterial periplasmic oxidative folding catalyst DsbA has been the ...
The disulfide bond forming DsbA enzymes and their DsbB interaction partners are attractive targets f...
DsbA is a protein‐folding catalyst from the periplasm of Escherichia coli that interacts with newly ...
t Disulfide-bond (Dsb) proteins are a family of redox proteins containing a Cys-X-X-Cys motif. They ...
International audienceBacterial virulence depends on the correct folding of surface-exposed proteins...
The three-dimensional structure of reduced DsbA from Escherichia coli in aqueous solution has been d...
This paper provides a description of the surface topography of DsbA, the bacterial disulfide-bond fo...
The disulfide bond (DSB) forming system and in particular DsbA, is a key bacterial oxidative folding...
Pathogens require protein-folding enzymes to produce functional virulence determinants. These foldas...
SummaryOxidation of cysteine pairs to disulfide requires cellular factors present in the bacterial p...
The biological kingdoms have evolved elaborate systems that ensure the catalysis of protein disulfid...
The Gram negative bacteria Chlamydia trachomatis is an obligate intracellular human pathogen that ca...
Bacterial DsbA enzymes catalyze oxidative folding of virulence factors, and have been identified as ...
Bacterial DsbA enzymes catalyze oxidative folding of virulence factors, and have been identified as ...
Background: The redox proteins that incorporate a thioredoxin fold have diverse properties and funct...