The pyruvate dehydrogenase regulator protein (PdhR) of Escherichia coli acts as a transcriptional regulator in a pyruvate dependent manner to control central metabolic fluxes. However, the complete PdhR regulon has not yet been uncovered. To achieve an extended understanding of its gene regulatory network, we combined large-scale network inference and experimental verification of results obtained by a systems biology approach
Funding Information: This work was funded by the Novo Nordisk Foundation grant no. NNF10CC1016517 an...
The present study addresses the regulatory network of Escherichia coli and offers a global view of t...
Metabolic flux is in part regulated by endogenous small molecules that modulate the catalytic activi...
Background: The pyruvate dehydrogenase regulator protein (PdhR) of Escherichia coli acts as a transc...
The pyruvate dehydrogenase (PDH) multienzyme complex plays a key role in the metabolic interconnecti...
The pyruvate dehydrogenase (PDH) multienzyme complex plays a key role in the metabolic interconnecti...
Pyruvate dehydrogenase complex (PDC) functions as the main determinant of the respiro-fermentative b...
AbstractThe aceE-aceF-lpd genes encoding the pyruvate dehydrogenase (PDH) complex of Escherichia col...
Genome-scale metabolic models have become a fundamental tool for examining metabolic principles. How...
In Escherichia coli, the genes encoding chemoreceptors, including Tsr for serine and Tar for asparta...
Transhydrogenases catalyse interconversion of the redox cofactors NADH and NADPH, thereby conveying ...
Genome-scale metabolic models have become a fundamental tool for examining metabolic principles. How...
Metabolic cofactors such as NADH and ATP play important roles in a large number of cellular reaction...
Metabolic cofactors such as NADH and ATP play important roles in a large number of cellular reaction...
The metabolism of microorganisms is regulated through two main mechanisms: changes of enzyme capacit...
Funding Information: This work was funded by the Novo Nordisk Foundation grant no. NNF10CC1016517 an...
The present study addresses the regulatory network of Escherichia coli and offers a global view of t...
Metabolic flux is in part regulated by endogenous small molecules that modulate the catalytic activi...
Background: The pyruvate dehydrogenase regulator protein (PdhR) of Escherichia coli acts as a transc...
The pyruvate dehydrogenase (PDH) multienzyme complex plays a key role in the metabolic interconnecti...
The pyruvate dehydrogenase (PDH) multienzyme complex plays a key role in the metabolic interconnecti...
Pyruvate dehydrogenase complex (PDC) functions as the main determinant of the respiro-fermentative b...
AbstractThe aceE-aceF-lpd genes encoding the pyruvate dehydrogenase (PDH) complex of Escherichia col...
Genome-scale metabolic models have become a fundamental tool for examining metabolic principles. How...
In Escherichia coli, the genes encoding chemoreceptors, including Tsr for serine and Tar for asparta...
Transhydrogenases catalyse interconversion of the redox cofactors NADH and NADPH, thereby conveying ...
Genome-scale metabolic models have become a fundamental tool for examining metabolic principles. How...
Metabolic cofactors such as NADH and ATP play important roles in a large number of cellular reaction...
Metabolic cofactors such as NADH and ATP play important roles in a large number of cellular reaction...
The metabolism of microorganisms is regulated through two main mechanisms: changes of enzyme capacit...
Funding Information: This work was funded by the Novo Nordisk Foundation grant no. NNF10CC1016517 an...
The present study addresses the regulatory network of Escherichia coli and offers a global view of t...
Metabolic flux is in part regulated by endogenous small molecules that modulate the catalytic activi...