Magnesium is one of the most abundant metal ions in living cells. Very specific and devoted transporters have evolved for transporting Mg2+ ions across the membrane and maintain magnesium homeostasis. Using genetic screens, we were able to identify the main players in magnesium homeostasis in the opportunistic pathogen Staphylococcus aureus. Here, we show that import of magnesium relies on the redundant activity of either CorA2 or MgtE since in absence of these two importers, bacteria require increased amounts of magnesium in the medium. A third CorA-like importer seems to play a minor role, at least under laboratory conditions. For export of magnesium, we identified two proteins, MpfA and MpfB. MpfA, is the main actor since it is essential...
Our recent publication has shed light on the importance of magnesium in the ability of quiescent Sal...
AbstractThe homeostasis of magnesium (Mg2+), an abundant divalent cation indispensable for many biol...
The past decade has witnessed multiple advances in our understanding of magnesium (Mg(2+)) homeostas...
Magnesium is one of the most abundant metal ions in living cells. Very specific and devoted transpor...
Staphylococcus aureus, an opportunistic pathogen present in the nasal cavities of approximatively 25...
<div><p>Magnesium is an essential divalent metal that serves many cellular functions. While most div...
Magnesium (Mg2+) is an essential element in biology due to its abundance and unique chemical propert...
Salmonella imports magnesium via three known transporters, the widely conserved CorA transporter and...
Streptococcus pneumoniae is a significant human pathogen which causes respiratory and serious invasi...
The molecular biology of mammalian magnesium transport-ers and their interrelations in cellular magn...
Streptococcus pneumoniae is a significant human pathogen which causes respiratory and serious invasi...
Magnesium (Mg(2+)) is the most prevalent divalent intracellular cation. As co-factor in many enzymat...
ABSTRACT Bacterial persisters emerge and increase in numbers over time as a bacterial culture grows ...
During infection, the host sequesters essential nutrients such as zinc, iron, and manganese in order...
171:4742-4751, 1989). Strains carrying one wild-type and two mutant alleles of the three loci were c...
Our recent publication has shed light on the importance of magnesium in the ability of quiescent Sal...
AbstractThe homeostasis of magnesium (Mg2+), an abundant divalent cation indispensable for many biol...
The past decade has witnessed multiple advances in our understanding of magnesium (Mg(2+)) homeostas...
Magnesium is one of the most abundant metal ions in living cells. Very specific and devoted transpor...
Staphylococcus aureus, an opportunistic pathogen present in the nasal cavities of approximatively 25...
<div><p>Magnesium is an essential divalent metal that serves many cellular functions. While most div...
Magnesium (Mg2+) is an essential element in biology due to its abundance and unique chemical propert...
Salmonella imports magnesium via three known transporters, the widely conserved CorA transporter and...
Streptococcus pneumoniae is a significant human pathogen which causes respiratory and serious invasi...
The molecular biology of mammalian magnesium transport-ers and their interrelations in cellular magn...
Streptococcus pneumoniae is a significant human pathogen which causes respiratory and serious invasi...
Magnesium (Mg(2+)) is the most prevalent divalent intracellular cation. As co-factor in many enzymat...
ABSTRACT Bacterial persisters emerge and increase in numbers over time as a bacterial culture grows ...
During infection, the host sequesters essential nutrients such as zinc, iron, and manganese in order...
171:4742-4751, 1989). Strains carrying one wild-type and two mutant alleles of the three loci were c...
Our recent publication has shed light on the importance of magnesium in the ability of quiescent Sal...
AbstractThe homeostasis of magnesium (Mg2+), an abundant divalent cation indispensable for many biol...
The past decade has witnessed multiple advances in our understanding of magnesium (Mg(2+)) homeostas...