Metals such as copper (Cu) and zinc (Zn) are important trace elements that can affect bacterial cell physiology but can also intoxicate bacteria at high concentrations. Discrete genetic systems for management of Cu and Zn efflux have been described in several bacterial pathogens, including streptococci. However, insight into molecular cross-talk between systems for Cu and Zn management in bacteria that drive metal detoxification, is limited. Here, we describe a biologically consequential cross-system effect of metal management in group B Streptococcus (GBS) governed by the Cu-responsive copY regulator in response to Zn. RNAseq analysis of wild-type (WT) and copY-deficient GBS subjected to metal stress revealed unique transcriptional links b...
Bacterial response to metals can require complex regulation. We report an overlapping regulation for...
Copper is a metallic element that is crucial for cell metabolism; however, in extended concentration...
Artículo de publicación ISISin acceso a texto completoBy integrating the microarray expression data ...
Zinc is an essential trace element for normal bacterial physiology but, divergently, can intoxicate ...
In bacteria, copper (Cu) can support metabolic processes as an enzymatic cofactor but can also cause...
Bacteria can utilize copper (Cu) as a trace element to support cellular processes; however, excess C...
Background: The first row transition metal ions zinc and copper are essential to the survival of man...
Any metal in excess can be toxic; therefore, metal homeostasis is critical to bacterial survival. Ba...
Copper (Cu) is an essential metal for bacterial physiology but in excess it is bacteriotoxic. To lim...
Infection with Streptococcus pyogenes is associated with a breadth of clinical manifestations rangin...
ABSTRACT Copper (Cu) is an essential metal for bacterial physiology but in excess it is bacteriotoxi...
Bacteria have evolved mechanisms which enable them to control intracellular concentrations of metals...
ABSTRACT Any metal in excess can be toxic; therefore, metal homeostasis is critical to bacterial sur...
Background: Maintenance of metal homeostasis is crucial in bacterial pathogenicity as metal starvati...
Proteins and enzymes require metal ions as enzymatic cofactors for optimal biological activities. Co...
Bacterial response to metals can require complex regulation. We report an overlapping regulation for...
Copper is a metallic element that is crucial for cell metabolism; however, in extended concentration...
Artículo de publicación ISISin acceso a texto completoBy integrating the microarray expression data ...
Zinc is an essential trace element for normal bacterial physiology but, divergently, can intoxicate ...
In bacteria, copper (Cu) can support metabolic processes as an enzymatic cofactor but can also cause...
Bacteria can utilize copper (Cu) as a trace element to support cellular processes; however, excess C...
Background: The first row transition metal ions zinc and copper are essential to the survival of man...
Any metal in excess can be toxic; therefore, metal homeostasis is critical to bacterial survival. Ba...
Copper (Cu) is an essential metal for bacterial physiology but in excess it is bacteriotoxic. To lim...
Infection with Streptococcus pyogenes is associated with a breadth of clinical manifestations rangin...
ABSTRACT Copper (Cu) is an essential metal for bacterial physiology but in excess it is bacteriotoxi...
Bacteria have evolved mechanisms which enable them to control intracellular concentrations of metals...
ABSTRACT Any metal in excess can be toxic; therefore, metal homeostasis is critical to bacterial sur...
Background: Maintenance of metal homeostasis is crucial in bacterial pathogenicity as metal starvati...
Proteins and enzymes require metal ions as enzymatic cofactors for optimal biological activities. Co...
Bacterial response to metals can require complex regulation. We report an overlapping regulation for...
Copper is a metallic element that is crucial for cell metabolism; however, in extended concentration...
Artículo de publicación ISISin acceso a texto completoBy integrating the microarray expression data ...