scholarly article | Q13442814 |
P8978 | DBLP publication ID | journals/bmcsb/DavidsonNS10 |
P6179 | Dimensions Publication ID | 1025313214 |
P356 | DOI | 10.1186/1752-0509-4-75 |
P932 | PMC publication ID | 2893085 |
P698 | PubMed publication ID | 20525212 |
P5875 | ResearchGate publication ID | 44651190 |
P2093 | author name string | Michael G Surette | |
Atul Narang | |||
Carla J Davidson | |||
P2860 | cites work | Dynamic regulation of the tryptophan operon: a modeling study and comparison with experimental data | Q24629020 |
Diverse two-dimensional input functions control bacterial sugar genes | Q24647458 | ||
Structure and function of the feed-forward loop network motif | Q24683513 | ||
Arac/XylS family of transcriptional regulators | Q28776772 | ||
Carbon catabolite repression in bacteria: many ways to make the most out of nutrients | Q29615329 | ||
Feedback regulation in the lactose operon: a mathematical modeling study and comparison with experimental data | Q30789434 | ||
Bacterial gene regulation in diauxic and non-diauxic growth | Q51130347 | ||
Mechanism responsible for glucose-lactose diauxie in Escherichia coli: challenge to the cAMP model. | Q52525231 | ||
Is there any role for cAMP-CRP in carbon catabolite repression of the Escherichia coli lac operon? | Q54414870 | ||
The relationship between external glucose concentration and cAMP levels inside Escherichia coli: implications for models of phosphotransferase-mediated regulation of adenylate cyclase. | Q54564961 | ||
In vivo experiments on the mechanism of action of L-arabinose C gene activator and lactose repressor. | Q54639855 | ||
Different cyclic AMP requirements for induction of the arabinose and lactose operons of Escherichia coli | Q68669496 | ||
Identification of araC protein and two-dimensional gels, its in vivo instability and normal level | Q70197881 | ||
Hemiplegic mutations in AraC protein | Q73301715 | ||
Genomic profiling of iron-responsive genes in Salmonella enterica serovar typhimurium by high-throughput screening of a random promoter library | Q31151582 | ||
Programming gene expression with combinatorial promoters | Q33305625 | ||
Catabolite gene activator protein mutations affecting activity of the araBAD promoter. | Q33722326 | ||
Negative autoregulation speeds the response times of transcription networks | Q33962256 | ||
Assigning numbers to the arrows: parameterizing a gene regulation network by using accurate expression kinetics | Q34075113 | ||
Detailed map of a cis-regulatory input function | Q35146579 | ||
In vivo induction kinetics of the arabinose promoters in Escherichia coli | Q35588041 | ||
Combinatorial transcriptional control of the lactose operon of Escherichia coli | Q35749641 | ||
Regulation of the araC gene of Escherichia coli: catabolite repression, autoregulation, and effect on araBAD expression | Q36264726 | ||
In vivo regulation of the Escherichia coli araC promoter. | Q36331681 | ||
In vivo titration of araC protein | Q36424219 | ||
Transcriptional regulatory networks in bacteria: from input signals to output responses. | Q36581863 | ||
Signal transduction by the bacterial phosphotransferase system. Diauxie and the crr gene (J. Monod revisited). | Q37808015 | ||
Variation of half-site organization and DNA looping by AraC protein | Q38322772 | ||
Apo-AraC actively seeks to loop. | Q38336410 | ||
On the Relation between Effector Concentration and the Rate of Induced Enzyme Synthesis | Q38362792 | ||
Recognition of overlapping nucleotides by AraC and the sigma subunit of RNA polymerase | Q39500634 | ||
Cooperative action of the catabolite activator protein and AraC in vitro at the araFGH promoter | Q39538791 | ||
DNA bending by AraC: a negative mutant. | Q39567237 | ||
Regulatory interactions controlling carbon metabolism: an overview | Q41401218 | ||
Inducer exclusion and the regulation of sugar transport | Q41401312 | ||
Correlation between growth rates, EIIACrr phosphorylation, and intracellular cyclic AMP levels in Escherichia coli K-12. | Q41928608 | ||
Transcription activation parameters at ara pBAD. | Q42628804 | ||
Dynamic model of Escherichia coli tryptophan operon shows an optimal structural design | Q44465628 | ||
Multistability in the lactose utilization network of Escherichia coli | Q44770275 | ||
Biochemical and physiological properties of the DNA binding domain of AraC protein | Q44956237 | ||
Using a quantitative blueprint to reprogram the dynamics of the flagella gene network | Q47372663 | ||
P275 | copyright license | Creative Commons Attribution 2.0 Generic | Q19125117 |
P6216 | copyright status | copyrighted | Q50423863 |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 75 | |
P577 | publication date | 2010-06-02 | |
P1433 | published in | BMC Systems Biology | Q4835949 |
P1476 | title | Integration of transcriptional inputs at promoters of the arabinose catabolic pathway | |
P478 | volume | 4 |
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