Abstract Background In the alpha subclass of proteobacteria iron homeostasis is controlled by diverse iron responsive regulators. Caulobacter crescentus, an important freshwater α-proteobacterium, uses the ferric uptake repressor (Fur) for such purpose. However, the impact of the iron availability on the C. crescentus transcriptome and an overall perspective of the regulatory networks involved remain unknown. Results In this work we report the identification of iron-responsive and Fur-regulated genes in C. crescentus using microarray-based global transcriptional analyses. We identified 42 genes that were strongly upregulated both by ...
Coxiella burnetii is a gram negative, obligate intracellular bacterium. It is the etiologic agent of...
Gluconacetobacter diazotrophicus has been the focus of several studies aiming to understand the mech...
The ferric uptake regulator (Fur) plays a major role in controlling the expression of iron homeostas...
Abstract Background In the alpha subclass of proteoba...
Background: In the alpha subclass of proteobacteria iron homeostasis is controlled by diverse iron r...
In most bacteria, the ferric uptake regulator (Fur) is a global regulator that controls iron homeost...
In C. crescentus, iron metabolism is mainly controlled by the transcription factor Fur (ferric uptak...
In C. crescentus, iron metabolism is mainly controlled by the transcription factor Fur (ferric uptak...
In C. crescentus, iron metabolism is mainly controlled by the transcription factor Fur (ferric uptak...
In C. crescentus, iron metabolism is mainly controlled by the transcription factor Fur (ferric uptak...
Caulobacter crescentus is an oligotrophic, Gram negative bacterium with a dimorphic lifecycle. It is...
The ferric uptake regulator (Fur) plays a critical role in the transcriptional regulation of iron me...
The ferric uptake regulator (Fur) plays a critical role in the transcriptional regulation of iron me...
Bacteria live in fluctuating environments, which they sense and respond to through gene regulation. ...
Organisms generally respond to iron deficiency by increasing their capacity to take up iron and by c...
Coxiella burnetii is a gram negative, obligate intracellular bacterium. It is the etiologic agent of...
Gluconacetobacter diazotrophicus has been the focus of several studies aiming to understand the mech...
The ferric uptake regulator (Fur) plays a major role in controlling the expression of iron homeostas...
Abstract Background In the alpha subclass of proteoba...
Background: In the alpha subclass of proteobacteria iron homeostasis is controlled by diverse iron r...
In most bacteria, the ferric uptake regulator (Fur) is a global regulator that controls iron homeost...
In C. crescentus, iron metabolism is mainly controlled by the transcription factor Fur (ferric uptak...
In C. crescentus, iron metabolism is mainly controlled by the transcription factor Fur (ferric uptak...
In C. crescentus, iron metabolism is mainly controlled by the transcription factor Fur (ferric uptak...
In C. crescentus, iron metabolism is mainly controlled by the transcription factor Fur (ferric uptak...
Caulobacter crescentus is an oligotrophic, Gram negative bacterium with a dimorphic lifecycle. It is...
The ferric uptake regulator (Fur) plays a critical role in the transcriptional regulation of iron me...
The ferric uptake regulator (Fur) plays a critical role in the transcriptional regulation of iron me...
Bacteria live in fluctuating environments, which they sense and respond to through gene regulation. ...
Organisms generally respond to iron deficiency by increasing their capacity to take up iron and by c...
Coxiella burnetii is a gram negative, obligate intracellular bacterium. It is the etiologic agent of...
Gluconacetobacter diazotrophicus has been the focus of several studies aiming to understand the mech...
The ferric uptake regulator (Fur) plays a major role in controlling the expression of iron homeostas...