International audienceBACKGROUND: The SOS response including two main proteins LexA and RecA, maintains the integrity of bacterial genomes after DNA damage due to metabolic or environmental assaults. Additionally, derepression of LexA-regulated genes can result in mutations, genetic exchange and expression of virulence factors. Here we describe the first comprehensive description of the in silico LexA regulon in Clostridium difficile, an important human pathogen. RESULTS: We grouped thirty C. difficile strains from different ribotypes and toxinotypes into three clusters according to lexA gene/protein variability. We applied in silico analysis coupled to surface plasmon resonance spectroscopy (SPR) and determined 16 LexA binding sites in C. ...
The bacterial SOS response represents a paradigm of gene networks controlled by a master transcripti...
LexA is an Escherichia coli repressor that controls the expression of about 20 SOS target genes in r...
DNA damage is a pervasive environmental threat, as such, most bacteria encode a network of genes cal...
International audienceBACKGROUND: The SOS response including two main proteins LexA and RecA, mainta...
Background: The SOS response including two main proteins LexA and RecA, maintains the integrity of b...
Background: The SOS response including two main proteins LexA and RecA, maintains the integrity of b...
The LexA regulated SOS network is a bacterial response to DNA damage of metabolic or environmental o...
The SOS response that responds to DNA damage induces many genes that are under LexA repression. A de...
The SOS response is the primary bacterial mechanism to address DNA damage, coordinating multiple cel...
The LexA protein is a transcriptional repressor of the bacterial SOS DNA repair system, which compri...
The LexA protein is a transcriptional repressor of the bacterial SOS DNA repair system, which compri...
The ability of bacterial pathogens to evolve and adapt to our antimicrobial agents has precipitated ...
The here-reported identification of the LexA-binding sequence of Bdellovibrio bacteriovorus, a bacte...
Jochmann N, Kurze A-K, Czaja LF, et al. Genetic makeup of the Corynebacterium glutamicum LexA regulo...
The SOS regulon of Escherichia coli consists of more than two dozen genes which are induced by damag...
The bacterial SOS response represents a paradigm of gene networks controlled by a master transcripti...
LexA is an Escherichia coli repressor that controls the expression of about 20 SOS target genes in r...
DNA damage is a pervasive environmental threat, as such, most bacteria encode a network of genes cal...
International audienceBACKGROUND: The SOS response including two main proteins LexA and RecA, mainta...
Background: The SOS response including two main proteins LexA and RecA, maintains the integrity of b...
Background: The SOS response including two main proteins LexA and RecA, maintains the integrity of b...
The LexA regulated SOS network is a bacterial response to DNA damage of metabolic or environmental o...
The SOS response that responds to DNA damage induces many genes that are under LexA repression. A de...
The SOS response is the primary bacterial mechanism to address DNA damage, coordinating multiple cel...
The LexA protein is a transcriptional repressor of the bacterial SOS DNA repair system, which compri...
The LexA protein is a transcriptional repressor of the bacterial SOS DNA repair system, which compri...
The ability of bacterial pathogens to evolve and adapt to our antimicrobial agents has precipitated ...
The here-reported identification of the LexA-binding sequence of Bdellovibrio bacteriovorus, a bacte...
Jochmann N, Kurze A-K, Czaja LF, et al. Genetic makeup of the Corynebacterium glutamicum LexA regulo...
The SOS regulon of Escherichia coli consists of more than two dozen genes which are induced by damag...
The bacterial SOS response represents a paradigm of gene networks controlled by a master transcripti...
LexA is an Escherichia coli repressor that controls the expression of about 20 SOS target genes in r...
DNA damage is a pervasive environmental threat, as such, most bacteria encode a network of genes cal...