Copper and iron are essential elements for cellular growth. Although bacteria have to overcome limitations of these metals by affine and selective uptake, excessive amounts of both metals are toxic for the cells. Here we investigated the influences of copper stress on iron homeostasis in Bacillus subtilis, and we present evidence that copper excess leads to imbalances of intracellular iron metabolism by disturbing assembly of iron-sulfur cofactors. Connections between copper and iron homeostasis were initially observed in microarray studies showing upregulation of Fur-dependent genes under conditions of copper excess. This effect was found to be relieved in a csoR mutant showing constitutive copper efflux. In contrast, stronger Fur-dependen...
Copper is an essential cofactor for many enzymes, and at over a threshold level, it is toxic for all...
Copper and zinc are essential metal ions, but toxic in excess. Bacteria have evolved different strat...
© 2014 Institut Pasteur.The response of Acidithiobacillus ferrooxidans ATCC 23270 to copper was anal...
Copper and iron are essential elements for cellular growth. Although bacteria have to overcome limit...
Copper is an essential cofactor for many enzymes, and at over a threshold level, it is toxic for all...
Copper is a trace element utilized by organisms as a cofactor involved in redox chemistry, electron ...
International audiencePollution by copper (Cu$^{2+}$) extensively used as antimicrobial in agricultu...
The Gram-positive bacteria Enterococcus hirae, Lactococcus lactis, and Bacillus subtilis have receiv...
Staphylococcus aureus is a pathogenic bacterium that causes a wide spectrum of human diseases and is...
Copper is an essential cofactor for many enzymes and over a threshold, it is toxic for all organisms...
Bacterial organisms continuously maintain homeostasis even in changing environments. This ability to...
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...
ABSTRACT Copper (Cu) ions serve as catalytic cofactors to drive key biochemical processes, and yet C...
Staphylococcus aureus is a public health concern. It can evade the immune system and develop resista...
Copper is an essential cofactor for many enzymes, and at over a threshold level, it is toxic for all...
Copper and zinc are essential metal ions, but toxic in excess. Bacteria have evolved different strat...
© 2014 Institut Pasteur.The response of Acidithiobacillus ferrooxidans ATCC 23270 to copper was anal...
Copper and iron are essential elements for cellular growth. Although bacteria have to overcome limit...
Copper is an essential cofactor for many enzymes, and at over a threshold level, it is toxic for all...
Copper is a trace element utilized by organisms as a cofactor involved in redox chemistry, electron ...
International audiencePollution by copper (Cu$^{2+}$) extensively used as antimicrobial in agricultu...
The Gram-positive bacteria Enterococcus hirae, Lactococcus lactis, and Bacillus subtilis have receiv...
Staphylococcus aureus is a pathogenic bacterium that causes a wide spectrum of human diseases and is...
Copper is an essential cofactor for many enzymes and over a threshold, it is toxic for all organisms...
Bacterial organisms continuously maintain homeostasis even in changing environments. This ability to...
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...
ABSTRACT Copper (Cu) ions serve as catalytic cofactors to drive key biochemical processes, and yet C...
Staphylococcus aureus is a public health concern. It can evade the immune system and develop resista...
Copper is an essential cofactor for many enzymes, and at over a threshold level, it is toxic for all...
Copper and zinc are essential metal ions, but toxic in excess. Bacteria have evolved different strat...
© 2014 Institut Pasteur.The response of Acidithiobacillus ferrooxidans ATCC 23270 to copper was anal...