Regulons of Corynebacterium glutamicum ATCC 13032
|
Allows to visualize regulome content in the context of metabolic pathways |
|
Type |
Regulator |
Effector |
Pathway |
Operons |
Sites |
TF |
AcnR |
Citrate |
Tricarboxylic acid cycle |
1 |
1 |
TF |
AmtR |
GlnK-AMP, signal transduction protein |
Nitrogen metabolism |
15 |
21 |
TF |
ArgR |
Arginine |
Arginine biosynthesis |
2 |
5 |
TF |
ArsR |
Arsenite; Arsenate |
Arsenic resistance |
4 |
8 |
TF |
BenR |
|
Benzoate degradation |
3 |
3 |
TF |
BioQ |
Biotin |
Biotin biosynthesis |
4 |
5 |
TF |
BioQ |
Biotin |
Biotin biosynthesis |
3 |
5 |
TF |
CadR |
Cadmium, ion (Cd2+) |
Cadmium resistance |
1 |
2 |
TF |
Cg0454 |
|
Multidrug resistance |
1 |
3 |
TF |
Cg0646 |
|
|
1 |
1 |
TF |
Cg0979 |
|
Lipoprotein export |
1 |
1 |
TF |
Cg1053 |
|
Multidrug resistance |
1 |
1 |
TF |
Cg1143 |
|
|
3 |
3 |
TF |
Cg1211 |
|
Metabolite transport |
2 |
4 |
TF |
Cg1831 |
|
Iron homeostasis |
2 |
2 |
TF |
Cg2314 |
|
Sugar utilization |
2 |
2 |
TF |
Cg2544 |
|
|
3 |
2 |
TF |
Cg3239 |
|
Metabolite transport |
2 |
2 |
TF |
Cg3261 |
|
Multidrug resistance; Multidrug efflux |
1 |
1 |
TF |
CitB |
Citrate |
Citrate utilization |
3 |
3 |
TF |
ClgR |
DNA damage |
Proteolysis |
8 |
7 |
TF |
CsoR |
Copper ion, (Cu+) |
Copper resistance |
2 |
2 |
TF |
DtxR |
Iron ion, (Fe2+) |
Iron homeostasis |
41 |
39 |
TF |
FasR |
|
Fatty acid biosynthesis |
4 |
4 |
TF |
FruR |
Fructose-6-phosphate |
Fructose utilization |
2 |
2 |
TF |
GabR |
|
Gamma-aminobutyrate utilization |
2 |
2 |
TF |
GenR |
Gentisate; 3-hydroxybenzoate |
3-hydroxybenzoate degradation |
3 |
3 |
TF |
GlxR |
Cyclic 3',5'-AMP |
Energy metabolism; Carbohydrate metabolism |
125 |
142 |
TF |
GntR |
Gluconate |
Gluconate utilization |
8 |
7 |
TF |
HrcA |
Heat shock |
Heat shock response |
2 |
3 |
TF |
HspR |
Heat shock |
Heat shock response |
2 |
3 |
TF |
IolR |
|
Inositol utilization |
6 |
8 |
TF |
IolR2 |
|
Inositol utilization |
2 |
2 |
TF |
LexA |
DNA damage |
SOS response |
31 |
34 |
TF |
LldR |
L-lactate |
Lactate utilization |
4 |
4 |
TF |
LtbR |
|
Tryptophan biosynthesis; Leucine biosynthesis |
8 |
10 |
TF |
LysG |
Lysine; Histidine; Arginine |
Amino acid efflux |
2 |
2 |
TF |
McbR |
S-adenosylmethionine; S-adenosylhomocysteine |
Methionine biosynthesis |
26 |
37 |
TF |
MntR |
Manganese ion, (Mn2+) |
Manganese homeostasis |
2 |
1 |
TF |
NanR |
N-acetylneuraminic acid |
Sialic acid utilization |
3 |
3 |
TF |
NrdR |
Deoxyribonucleotides |
Deoxyribonucleotide biosynthesis |
1 |
3 |
TF |
NrtR |
Adenosine diphosphate ribose |
NAD biosynthesis |
1 |
2 |
TF |
PcaO |
Protocatechuate |
Protocatechuate degradation |
1 |
1 |
TF |
PcaR |
|
Protocatechuate degradation |
4 |
4 |
TF |
PctR |
|
Phosphonate utilization |
1 |
1 |
TF |
PdxR |
Pyridoxal-5-phosphate |
Pyridoxine biosynthesis |
1 |
1 |
TF |
QacR |
|
Drug resistance |
1 |
1 |
TF |
QorR |
|
Energy metabolism |
2 |
2 |
TF |
QsuR |
Shikimate; Quinate |
Aromatic amino acid metabolism |
2 |
2 |
TF |
RbsR |
Ribose |
Ribose utilization |
3 |
3 |
TF |
RosR |
Hydrogen peroxide; Manganese ion, (Mn2+); Iron ion, (Fe2+) |
Peroxide stress response |
11 |
11 |
TF |
SsuR |
Sulfite; Sulfate |
Sulfur metabolism |
5 |
4 |
TF |
SufR |
Iron-sulfur cluster redox state |
Iron-sulfur cluster biogenesis |
1 |
1 |
TF |
SutR |
Sulfate |
Sulfur metabolism |
1 |
1 |
TF |
UriR |
New effector |
Pyrimidine utilization; Uridine utilization |
2 |
2 |
TF |
VanR |
Vanillate; Ferulic acid |
Vanillate utilization |
2 |
2 |
TF |
Znr |
Zinc ion, (Zn2+) |
Zinc homeostasis |
1 |
1 |
TF |
Zur |
Zinc ion, (Zn2+) |
Zinc homeostasis |
7 |
11 |
RNA |
Cobalamin |
Adenosylcobalamin |
Cobalamin biosynthesis |
2 |
1 |
RNA |
FMN |
Flavin mononucleotide |
Riboflavin biosynthesis |
1 |
1 |
RNA |
L10_leader |
|
Ribosome biogenesis |
2 |
1 |
RNA |
PyrR |
PyrR |
Pyrimidine metabolism |
1 |
1 |
RNA |
S15 |
|
Ribosome biogenesis |
1 |
1 |
RNA |
T-box(Ile) |
Ile-tRNA |
Amino acid metabolism |
1 |
1 |
RNA |
TPP |
Thiamine pyrophosphate |
Thiamine biosynthesis |
6 |
5 |
RNA |
ydaO-yuaA |
|
Cell wall metabolism |
2 |
2 |
RNA |
yybP-ykoY |
|
|
3 |
3 |
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