The metabolic flexibility of bacteria is key to their ability to survive and thrive in a wide range of environments. Optimal switching from one metabolic pathway to another is a key requirement for this flexibility. Respiration is a good example: many bacteria utilize O(2) as the terminal electron acceptor, but can switch to a range of other acceptors, such as nitrate, when O(2) becomes limiting. Sensing environmental levels of O(2) is the key step in switching from aerobic to anaerobic respiration. In Escherichia coli, the fumarate and nitrate reduction transcriptional regulator (FNR) controls this switch. Under O(2)-limiting conditions, FNR binds a [4Fe-4S](2+) cluster, generating a transcriptionally active dimeric form. Exposure to O(2) ...
Sutton VR, Stubna A, Patschkowski T, Munck E, Beinert H, Kiley PJ. Superoxide destroys the [2Fe-2S]2...
The Escherichia coli fumarate and nitrate reduction (FNR) regulator acts as the cell’s master switch...
The Escherichia coli fumarate-nitrate reduction regulator (FNR) protein is the paradigm for bacteria...
The metabolic flexibility of bacteria is key to their ability to survive and thrive in a wide range ...
In Escherichia coli, the switch between aerobic and anaerobic metabolism is controlled primarily by ...
In Escherichia coli, the switch between aerobic and anaerobic metabolism is primarily controlled by ...
Fumarate and nitrate reduction regulatory (FNR) proteins are bacterial transcription factors that co...
Fumarate and nitrate reduction regulatory (FNR) proteins are bacterial transcription factors that co...
The fumarate and nitrate reduction (FNR) regulator is the master switch for the transition between a...
The FNR protein of Escherichia coli is a redox-responsive transcription regulator that activates and...
Escherichia coli FNR is an O(2)-sensing transcription factor. In vitro studies indicate that anaerob...
AbstractFNR is a transcription regulator that controls the expression of target genes in response to...
The iron-sulfur cluster containing protein FNR is the master regulator for the switch between anaero...
The Escherichia coli fumarate and nitrate reductase (FNR) regulator protein is an important transcri...
The Escherichia coli fumarate and nitrate reductase (FNR) regulator protein is an important transcri...
Sutton VR, Stubna A, Patschkowski T, Munck E, Beinert H, Kiley PJ. Superoxide destroys the [2Fe-2S]2...
The Escherichia coli fumarate and nitrate reduction (FNR) regulator acts as the cell’s master switch...
The Escherichia coli fumarate-nitrate reduction regulator (FNR) protein is the paradigm for bacteria...
The metabolic flexibility of bacteria is key to their ability to survive and thrive in a wide range ...
In Escherichia coli, the switch between aerobic and anaerobic metabolism is controlled primarily by ...
In Escherichia coli, the switch between aerobic and anaerobic metabolism is primarily controlled by ...
Fumarate and nitrate reduction regulatory (FNR) proteins are bacterial transcription factors that co...
Fumarate and nitrate reduction regulatory (FNR) proteins are bacterial transcription factors that co...
The fumarate and nitrate reduction (FNR) regulator is the master switch for the transition between a...
The FNR protein of Escherichia coli is a redox-responsive transcription regulator that activates and...
Escherichia coli FNR is an O(2)-sensing transcription factor. In vitro studies indicate that anaerob...
AbstractFNR is a transcription regulator that controls the expression of target genes in response to...
The iron-sulfur cluster containing protein FNR is the master regulator for the switch between anaero...
The Escherichia coli fumarate and nitrate reductase (FNR) regulator protein is an important transcri...
The Escherichia coli fumarate and nitrate reductase (FNR) regulator protein is an important transcri...
Sutton VR, Stubna A, Patschkowski T, Munck E, Beinert H, Kiley PJ. Superoxide destroys the [2Fe-2S]2...
The Escherichia coli fumarate and nitrate reduction (FNR) regulator acts as the cell’s master switch...
The Escherichia coli fumarate-nitrate reduction regulator (FNR) protein is the paradigm for bacteria...