Thioredoxin-like proteins of the TlpA/ResE/CcmG subfamily are known to face the periplasm in gram-negative bacteria. Using the tlpA gene of Bradyrhizobium japonicum as a query, we identified a locus (NGO1923) in Neisseria gonorrhoeae that encodes a thioredoxin-like protein (NG_TlpA). Bioinformatics analysis indicated that the predicted NG_TlpA protein contained a cleavable signal peptide at the N terminus, and secondary structure analysis identified a thioredoxin fold with a helical insertion (similar to 25 residues), similar to that found in B. japonicum TlpA but absent in cytoplasmic thioredoxins. Biochemical characterization of a recombinant form of NG_TlpA revealed a standard redox potential (E(0)') of -206 mV. This property and the obs...
To fight oxidative damage due to reactive oxygen species (ROS), cells are equipped of different enzy...
The ubiquitous thioredoxin fold proteins catalyze oxidation, reduction, or disulfide exchange reacti...
Over the years, N. gonorrhoeae has evolved and acquired different mechanisms to protect itself again...
The PilB protein from Neisseria gonorrhoeae is located in the periplasm and made up of three domains...
AbstractTlpA, the membrane-anchored, thioredoxin-like protein from Bradyrhizobium japonicum, is esse...
In Neisseria gonorrhoeae, the MerR family transcription factor NmlR activates 3 operons in response ...
InNeisseria gonorrhoeae, theMerR family transcription factor NmlR activates 3 operons in response to...
In Neisseria gonorrhoeae, the MerR family transcription factor NmlR activates 3 operons in response ...
Thioredoxin (Trx) can regulate disulfide bond reduction of target proteins to maintain the reduced i...
International audienceTlpAs are bacterial thioredoxin-like periplasmic disulfide oxidoreductases gen...
Results of this study showed that the anaerobic, opportunistic pathogen Bacteroides fragilis lacks t...
AbstractThiol–disulfide oxidoreductase systems of bacterial cytoplasm and eukaryotic cytosol favor r...
Bacterial virulence depends on the correct folding of surface-exposed proteins, a process catalyzed ...
The thioredoxin system, involved in preservation of the reduced state of cytoplasmic proteins, inclu...
The worldwide incidence of neisserial infections, particularly gonococcal infections, is increasingl...
To fight oxidative damage due to reactive oxygen species (ROS), cells are equipped of different enzy...
The ubiquitous thioredoxin fold proteins catalyze oxidation, reduction, or disulfide exchange reacti...
Over the years, N. gonorrhoeae has evolved and acquired different mechanisms to protect itself again...
The PilB protein from Neisseria gonorrhoeae is located in the periplasm and made up of three domains...
AbstractTlpA, the membrane-anchored, thioredoxin-like protein from Bradyrhizobium japonicum, is esse...
In Neisseria gonorrhoeae, the MerR family transcription factor NmlR activates 3 operons in response ...
InNeisseria gonorrhoeae, theMerR family transcription factor NmlR activates 3 operons in response to...
In Neisseria gonorrhoeae, the MerR family transcription factor NmlR activates 3 operons in response ...
Thioredoxin (Trx) can regulate disulfide bond reduction of target proteins to maintain the reduced i...
International audienceTlpAs are bacterial thioredoxin-like periplasmic disulfide oxidoreductases gen...
Results of this study showed that the anaerobic, opportunistic pathogen Bacteroides fragilis lacks t...
AbstractThiol–disulfide oxidoreductase systems of bacterial cytoplasm and eukaryotic cytosol favor r...
Bacterial virulence depends on the correct folding of surface-exposed proteins, a process catalyzed ...
The thioredoxin system, involved in preservation of the reduced state of cytoplasmic proteins, inclu...
The worldwide incidence of neisserial infections, particularly gonococcal infections, is increasingl...
To fight oxidative damage due to reactive oxygen species (ROS), cells are equipped of different enzy...
The ubiquitous thioredoxin fold proteins catalyze oxidation, reduction, or disulfide exchange reacti...
Over the years, N. gonorrhoeae has evolved and acquired different mechanisms to protect itself again...