Free extracellular DNA provides nutrition to bacteria and promotes bacterial evolution by inducing excessive mutagenesis of the genome. To understand the influence of extracellular DNA fragments on D. radiodurans, we investigated cell growth and survival after extracellular DNA or dNMPs treatment. The results showed that the extracellular DNA fragments inhibited the growth of D. radiodurans. Interestingly, dGMP, a DNA component, enhanced D. radiodurans tolerance to H2O2 and gamma-radiation significantly. Further experiments indicated that extracellular dGMP stimulated the activity of one catalase (KatA, DR1998), and induced gene transcription including the extracellular nuclease (drb0067). When this only extracellular nuclease gene (drb0067...
Recent evidence has implicated single-stranded DNA-binding protein (SSB) expression level as an impo...
<div><p>Here, we have developed an extremely efficient <i>in vivo</i> Tn5-based mutagenesis procedur...
<div><p>In order to understand the mechanism governing radiation resistance in <i>Deinococcus radiod...
Free extracellular DNA provides nutrition to bacteria and promotes bacterial evolution by inducing e...
For Deinococcus radiodurans and other bacteria which are extremely resistant to ionizing radiation, ...
International audienceHere, we have developed an extremely efficient in vivo Tn5-based mutagenesis p...
The Deinococcus radiodurans bacterium is extremely resistant to ionising radiation and desiccation a...
Abstract Abstract Abstract Abstract Abstract Gamma radiation acts directly on the cellular component...
Deinococcus radiodurans, an important extremophile, possesses extraordinary stress tolerance ability...
The bacterium Deinococcus radiodurans can withstand extraordinary levels of ionizing radiation, refl...
The cyclic AMP receptor protein family of transcription factors regulates various metabolic pathways...
During the first hour after a sublethal dose of ionizing radiation, 72 genes were upregulated threef...
Deinococcus radiodurans is an unusual bacterium, displaying an outstanding resistance to desiccation...
International audienceHorizontal gene transfer is a major driver of bacterial evolution and adaptati...
Deinococcus bacteria are extremely resistant to radiation, oxidation, and desiccation. Resilience to...
Recent evidence has implicated single-stranded DNA-binding protein (SSB) expression level as an impo...
<div><p>Here, we have developed an extremely efficient <i>in vivo</i> Tn5-based mutagenesis procedur...
<div><p>In order to understand the mechanism governing radiation resistance in <i>Deinococcus radiod...
Free extracellular DNA provides nutrition to bacteria and promotes bacterial evolution by inducing e...
For Deinococcus radiodurans and other bacteria which are extremely resistant to ionizing radiation, ...
International audienceHere, we have developed an extremely efficient in vivo Tn5-based mutagenesis p...
The Deinococcus radiodurans bacterium is extremely resistant to ionising radiation and desiccation a...
Abstract Abstract Abstract Abstract Abstract Gamma radiation acts directly on the cellular component...
Deinococcus radiodurans, an important extremophile, possesses extraordinary stress tolerance ability...
The bacterium Deinococcus radiodurans can withstand extraordinary levels of ionizing radiation, refl...
The cyclic AMP receptor protein family of transcription factors regulates various metabolic pathways...
During the first hour after a sublethal dose of ionizing radiation, 72 genes were upregulated threef...
Deinococcus radiodurans is an unusual bacterium, displaying an outstanding resistance to desiccation...
International audienceHorizontal gene transfer is a major driver of bacterial evolution and adaptati...
Deinococcus bacteria are extremely resistant to radiation, oxidation, and desiccation. Resilience to...
Recent evidence has implicated single-stranded DNA-binding protein (SSB) expression level as an impo...
<div><p>Here, we have developed an extremely efficient <i>in vivo</i> Tn5-based mutagenesis procedur...
<div><p>In order to understand the mechanism governing radiation resistance in <i>Deinococcus radiod...