Abstract Background Deinococcus radiodurans accumulates high levels of manganese ions, and this is believed to be correlated with the radiation resistance ability of this microorganism. However, the maintenance of manganese ion homeostasis in D. radiodurans remains to be investigated. Results In this study, we identified the manganese efflux protein (MntE) in D. radiodurans. The null mutant of mntE was more sensitive than the wild-type strain to manganese ions, and the growth of the mntE mutant was delayed in manganese-supplemented media. Furthermore, there was a substantial increase in the in vivo concentration of manganese ions. Consistent with these characteristics, the mntE mutant was more resistant to H2O2, ultraviolet rays, and γ-radi...
The remarkable ability of bacterium Deinococcus radiodurans to survive extreme doses of γ-rays (12,0...
Multiple strains of Deinococcus radiodurans were transformed, creating knockout mutations in genes r...
Iron acquisition by bacteria is well studied, but iron export from bacteria is less understood. Here...
Deinococcus radiodurans is best known for its extraordinary radiation resistance. Manganese(II) ions...
"Deinococcus radiodurans is a radiation resistant bacterium. For this reason, it has been a focus of...
<div><p>Ferric uptake regulator (Fur) is a transcriptional regulator that controls the expression of...
To understand the effects triggered by Mn2+ on Deinococcus radiodurans, the proteome patterns associ...
<div><p>The high intracellular Mn/Fe ratio observed within the bacteria <em>Deinococcus radiodurans<...
The high intracellular Mn/Fe ratio observed within the bacteria Deinococcus radiodurans may contribu...
The bacterium Deinococcus radiodurans is highly resistant to several stress conditions, such as radi...
In the hierarchy of cellular targets damaged by ionizing radiation (IR), classical models of radiati...
For Deinococcus radiodurans and other bacteria which are extremely resistant to ionizing radiation, ...
To understand the effects triggered by Mn2+ on Deinococcus radiodurans, the proteome patterns associ...
The high intracellular Mn/Fe ratio observed within the bacteria Deinococcus radiodurans may contribu...
Ionizing Radiation (IR) Resistance in Bacteria. Until recently, there have been no clear physiologic...
The remarkable ability of bacterium Deinococcus radiodurans to survive extreme doses of γ-rays (12,0...
Multiple strains of Deinococcus radiodurans were transformed, creating knockout mutations in genes r...
Iron acquisition by bacteria is well studied, but iron export from bacteria is less understood. Here...
Deinococcus radiodurans is best known for its extraordinary radiation resistance. Manganese(II) ions...
"Deinococcus radiodurans is a radiation resistant bacterium. For this reason, it has been a focus of...
<div><p>Ferric uptake regulator (Fur) is a transcriptional regulator that controls the expression of...
To understand the effects triggered by Mn2+ on Deinococcus radiodurans, the proteome patterns associ...
<div><p>The high intracellular Mn/Fe ratio observed within the bacteria <em>Deinococcus radiodurans<...
The high intracellular Mn/Fe ratio observed within the bacteria Deinococcus radiodurans may contribu...
The bacterium Deinococcus radiodurans is highly resistant to several stress conditions, such as radi...
In the hierarchy of cellular targets damaged by ionizing radiation (IR), classical models of radiati...
For Deinococcus radiodurans and other bacteria which are extremely resistant to ionizing radiation, ...
To understand the effects triggered by Mn2+ on Deinococcus radiodurans, the proteome patterns associ...
The high intracellular Mn/Fe ratio observed within the bacteria Deinococcus radiodurans may contribu...
Ionizing Radiation (IR) Resistance in Bacteria. Until recently, there have been no clear physiologic...
The remarkable ability of bacterium Deinococcus radiodurans to survive extreme doses of γ-rays (12,0...
Multiple strains of Deinococcus radiodurans were transformed, creating knockout mutations in genes r...
Iron acquisition by bacteria is well studied, but iron export from bacteria is less understood. Here...