ABSTRACT Two-component systems control periplasmic Cu+ homeostasis in Gram-negative bacteria. In characterized systems such as Escherichia coli CusRS, upon Cu+ binding to the periplasmic sensing region of CusS, a cytoplasmic phosphotransfer domain of the sensor phosphorylates the response regulator CusR. This drives the expression of efflux transporters, chaperones, and redox enzymes to ameliorate metal toxic effects. Here, we show that the Pseudomonas aeruginosa two-component sensor histidine kinase CopS exhibits a Cu-dependent phosphatase activity that maintains CopR in a nonphosphorylated state when the periplasmic Cu levels are below the activation threshold of CopS. Upon Cu+ binding to the sensor, the phosphatase activity is blocked an...
The cop operon is a key element of copper homeostasis in Enterococcus hirae. It encodes two copper A...
Copper resistance system in the cyanobacterium Synechocystis sp. PCC 6803 comprises two operons, cop...
Copper is an important micronutrient required as a redox co-factor in the catalytic centers of enzym...
Two-component systems control periplasmic Cu1 homeostasis in Gramnegative bacteria. In characterized...
Copper is an essential element, yet toxic to cells. It can damage biomolecules by radical formation ...
Copper homeostasis in the bacterium Pseudomonas fluorescens SBW25 appears to be mediated mainly via ...
Transition metals such as copper, zinc and nickel are required in many enzymatic processes that requ...
Bacteria may live in harsh environments where they face changing and new conditions. Therefore, the ...
Pseudomonas aeruginosa, an opportunistic pathogen, has two transmembrane Cu+ transport ATPases, CopA...
In bacteria, two-component systems act as signaling systems to respond to environmental stimuli. Two...
A.D. and A.A. contributed equally to this work. ABSTRACT In the absence of a tight control of copper...
ABSTRACT In the absence of a tight control of copper entrance into cells, bacteria have evolved diff...
International audienceIn the absence of a tight control of copper entrance into cells, bacteria have...
Many organisms, from bacteria to humans, require copper for life, as it is part of many enzymes. On ...
Copper is essential for all living organisms but is toxic when present in excess. Therefore organism...
The cop operon is a key element of copper homeostasis in Enterococcus hirae. It encodes two copper A...
Copper resistance system in the cyanobacterium Synechocystis sp. PCC 6803 comprises two operons, cop...
Copper is an important micronutrient required as a redox co-factor in the catalytic centers of enzym...
Two-component systems control periplasmic Cu1 homeostasis in Gramnegative bacteria. In characterized...
Copper is an essential element, yet toxic to cells. It can damage biomolecules by radical formation ...
Copper homeostasis in the bacterium Pseudomonas fluorescens SBW25 appears to be mediated mainly via ...
Transition metals such as copper, zinc and nickel are required in many enzymatic processes that requ...
Bacteria may live in harsh environments where they face changing and new conditions. Therefore, the ...
Pseudomonas aeruginosa, an opportunistic pathogen, has two transmembrane Cu+ transport ATPases, CopA...
In bacteria, two-component systems act as signaling systems to respond to environmental stimuli. Two...
A.D. and A.A. contributed equally to this work. ABSTRACT In the absence of a tight control of copper...
ABSTRACT In the absence of a tight control of copper entrance into cells, bacteria have evolved diff...
International audienceIn the absence of a tight control of copper entrance into cells, bacteria have...
Many organisms, from bacteria to humans, require copper for life, as it is part of many enzymes. On ...
Copper is essential for all living organisms but is toxic when present in excess. Therefore organism...
The cop operon is a key element of copper homeostasis in Enterococcus hirae. It encodes two copper A...
Copper resistance system in the cyanobacterium Synechocystis sp. PCC 6803 comprises two operons, cop...
Copper is an important micronutrient required as a redox co-factor in the catalytic centers of enzym...