The fumarate and nitrate reduction (FNR) regulator is the master switch for the transition between anaerobic and aerobic respiration in Escherichia coli. Reaction of dimeric [4Fe-4S] FNR with O2 results in conversion of the cluster into a [2Fe-2S] form, via a [3Fe-4S] intermediate, leading to the loss of DNA binding through dissociation of the dimer into monomers. In the present paper, we report studies of two previously identified variants of FNR, D154A and I151A, in which the form of the cluster is decoupled from the association state. In vivo studies of permanently dimeric D154A FNR show that DNA binding does not affect the rate of cluster incorporation into the apoprotein or the rate of O2-mediated cluster loss. In vitro studies show th...
AbstractFNR is a transcription regulator that controls the expression of target genes in response to...
Escherichia coli FNR is an O(2)-sensing transcription factor. In vitro studies indicate that anaerob...
The synthesis of the enzymes constituting the electron transport chain of Escherichia coli is contro...
The fumarate and nitrate reduction (FNR) regulator is the master switch for the transition between a...
Fumarate and nitrate reduction regulatory (FNR) proteins are bacterial transcription factors that co...
The metabolic flexibility of bacteria is key to their ability to survive and thrive in a wide range ...
Fumarate and nitrate reduction regulatory (FNR) proteins are bacterial transcription factors that co...
In Escherichia coli, the switch between aerobic and anaerobic metabolism is primarily controlled by ...
The metabolic flexibility of bacteria is key to their ability to survive and thrive in a wide range ...
The Escherichia coli fumarate and nitrate reduction (FNR) regulator acts as the cell’s master switch...
The Escherichia coli fumarate and nitrate reductase (FNR) regulator protein is an important transcri...
In Escherichia coli, the switch between aerobic and anaerobic metabolism is controlled primarily by ...
The Escherichia coli fumarate and nitrate reductase (FNR) regulator protein is an important transcri...
The anaerobic global regulator FNR from Escherichia coli is a [4Fe-4S] 2+ cluster containing, O 2 la...
The FNR protein of Escherichia coli is a redox-responsive transcription regulator that activates and...
AbstractFNR is a transcription regulator that controls the expression of target genes in response to...
Escherichia coli FNR is an O(2)-sensing transcription factor. In vitro studies indicate that anaerob...
The synthesis of the enzymes constituting the electron transport chain of Escherichia coli is contro...
The fumarate and nitrate reduction (FNR) regulator is the master switch for the transition between a...
Fumarate and nitrate reduction regulatory (FNR) proteins are bacterial transcription factors that co...
The metabolic flexibility of bacteria is key to their ability to survive and thrive in a wide range ...
Fumarate and nitrate reduction regulatory (FNR) proteins are bacterial transcription factors that co...
In Escherichia coli, the switch between aerobic and anaerobic metabolism is primarily controlled by ...
The metabolic flexibility of bacteria is key to their ability to survive and thrive in a wide range ...
The Escherichia coli fumarate and nitrate reduction (FNR) regulator acts as the cell’s master switch...
The Escherichia coli fumarate and nitrate reductase (FNR) regulator protein is an important transcri...
In Escherichia coli, the switch between aerobic and anaerobic metabolism is controlled primarily by ...
The Escherichia coli fumarate and nitrate reductase (FNR) regulator protein is an important transcri...
The anaerobic global regulator FNR from Escherichia coli is a [4Fe-4S] 2+ cluster containing, O 2 la...
The FNR protein of Escherichia coli is a redox-responsive transcription regulator that activates and...
AbstractFNR is a transcription regulator that controls the expression of target genes in response to...
Escherichia coli FNR is an O(2)-sensing transcription factor. In vitro studies indicate that anaerob...
The synthesis of the enzymes constituting the electron transport chain of Escherichia coli is contro...