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Information on Organism Acinetobacter sp.

TaxTree of Organism Acinetobacter sp.
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PATHWAY
BRENDA Link
KEGG Link
MetaCyc Link
(4Z,7Z,10Z,13Z,16Z)-docosapentaenoate biosynthesis (6-desaturase)
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-
PWY-7726
(8E,10E)-dodeca-8,10-dienol biosynthesis
-
-
PWY-7654
(R)-camphor degradation
-
-
P601-PWY
(S)-camphor degradation
-
-
PWY-6989
(S)-lactate fermentation to propanoate, acetate and hydrogen
-
-
PWY-8086
(S)-propane-1,2-diol degradation
-
-
PWY-7013
1,3-dimethylbenzene degradation to 3-methylbenzoate
-
-
PWY-5428
1,3-propanediol biosynthesis (engineered)
-
-
PWY-7385
1,4-dimethylbenzene degradation to 4-methylbenzoate
-
-
PWY-5429
1,5-anhydrofructose degradation
-
-
PWY-6992
1-butanol autotrophic biosynthesis (engineered)
-
-
PWY-6886
2,4-dichlorophenoxyacetate degradation
-
-
PWY-6085
2,5-xylenol and 3,5-xylenol degradation
-
-
PWY-7698
2-amino-3-carboxymuconate semialdehyde degradation to glutaryl-CoA
-
-
PWY-5652
2-hydroxybiphenyl degradation
-
-
PWY-7008
2-hydroxypenta-2,4-dienoate degradation
-
-
PWY-5162
2-methyl-branched fatty acid beta-oxidation
-
-
PWY-8181
2-nitrobenzoate degradation II
-
-
PWY-5648
2-nitrotoluene degradation
-
-
PWY-5641
2-oxoglutarate decarboxylation to succinyl-CoA
-
-
PWY-5084
3-chlorocatechol degradation
-
-
3-chlorotoluene degradation II
-
-
PWY-6104
3-dehydroquinate biosynthesis II (archaea)
-
-
PWY-6160
3-methyl-branched fatty acid alpha-oxidation
-
-
PWY66-387
3-methylbutanol biosynthesis (engineered)
-
-
PWY-6871
3-phenylpropanoate degradation
-
-
P281-PWY
3-phenylpropionate degradation
-
-
4-aminobutanoate degradation V
-
-
PWY-5022
4-chloro-2-methylphenoxyacetate degradation
-
-
PWY-6086
4-chlorobenzoate degradation
-
-
PWY-6215
4-chloronitrobenzene degradation
-
-
PWY-5645
4-coumarate degradation (aerobic)
-
-
PWY-8002
4-hydroxymandelate degradation
4-hydroxyphenylacetate degradation
4-methylphenol degradation to protocatechuate
-
-
PWY-7700
4-sulfocatechol degradation
-
-
PWY-6041
5-nitroanthranilate degradation
-
-
PWY-7044
acetaldehyde biosynthesis I
-
-
PWY-6333
acetate and ATP formation from acetyl-CoA III
-
-
PWY-8328
acetate conversion to acetyl-CoA
-
-
PWY0-1313
acetate fermentation
-
-
acetone degradation I (to methylglyoxal)
-
-
PWY-5451
acetone degradation III (to propane-1,2-diol)
-
-
PWY-7466
acetylene degradation (anaerobic)
-
-
P161-PWY
acrylonitrile degradation I
-
-
PWY-7308
acrylonitrile degradation II
-
-
PWY-7309
adenosine ribonucleotides de novo biosynthesis
-
-
PWY-7219
adipate biosynthesis
-
-
PWY-8347
adipate degradation
adlupulone and adhumulone biosynthesis
-
-
PWY-7857
aerobic toluene degradation
-
-
agarose degradation
-
-
PWY-6816
alanine metabolism
-
-
Alanine, aspartate and glutamate metabolism
-
-
alkane oxidation
-
-
PWY-2724
alpha-Linolenic acid metabolism
-
-
Amaryllidacea alkaloids biosynthesis
-
-
PWY-7826
Amino sugar and nucleotide sugar metabolism
-
-
Aminobenzoate degradation
-
-
ammonia assimilation cycle I
-
-
PWY-6963
ammonia assimilation cycle II
-
-
PWY-6964
ammonia assimilation cycle III
-
-
AMMASSIM-PWY
ammonia oxidation I (aerobic)
-
-
AMMOXID-PWY
ammonia oxidation III
-
-
PWY-2242
anaerobic energy metabolism (invertebrates, cytosol)
-
-
PWY-7383
anaerobic energy metabolism (invertebrates, mitochondrial)
-
-
PWY-7384
anapleurotic synthesis of oxalacetate
-
-
aniline degradation
-
-
PWY-6533
anthranilate degradation I (aerobic)
-
-
PWY-6079
Arachidonic acid metabolism
-
-
arachidonic acid metabolism
-
-
Arginine and proline metabolism
-
-
Arginine biosynthesis
-
-
arginine metabolism
-
-
aromatic biogenic amine degradation (bacteria)
-
-
PWY-7431
arsenate reduction (respiratory)
-
-
PWY-4601
arsonoacetate degradation
-
-
P482-PWY
Ascorbate and aldarate metabolism
-
-
ascorbate metabolism
-
-
assimilatory sulfate reduction II
-
-
SULFMETII-PWY
assimilatory sulfate reduction III
-
-
PWY-6683
assimilatory sulfate reduction IV
-
-
PWY1ZNC-1
autoinducer AI-1 biosynthesis
-
-
PWY-6157
bacterial bioluminescence
-
-
PWY-7723
benzoate biosynthesis I (CoA-dependent, beta-oxidative)
-
-
PWY-6443
benzoate biosynthesis III (CoA-dependent, non-beta-oxidative)
-
-
PWY-6446
Benzoate degradation
-
-
benzoate degradation I (aerobic)
-
-
PWY-2503
benzoyl-CoA biosynthesis
-
-
PWY-6458
benzoyl-CoA degradation I (aerobic)
-
-
PWY-1361
beta-Alanine metabolism
-
-
beta-D-glucuronide and D-glucuronate degradation
-
-
PWY-7247
Bifidobacterium shunt
-
-
P124-PWY
Biosynthesis of secondary metabolites
-
-
Biosynthesis of unsaturated fatty acids
-
-
biphenyl degradation
-
-
PWY5F9-12
bisphenol A degradation
-
-
PWY-7757
bupropion degradation
-
-
PWY66-241
Butanoate metabolism
-
-
butanol and isobutanol biosynthesis (engineered)
-
-
PWY-7396
C4 and CAM-carbon fixation
-
-
C4 photosynthetic carbon assimilation cycle, NAD-ME type
-
-
PWY-7115
C4 photosynthetic carbon assimilation cycle, NADP-ME type
-
-
PWY-241
C4 photosynthetic carbon assimilation cycle, PEPCK type
-
-
PWY-7117
Caffeine metabolism
-
-
Calvin-Benson-Bassham cycle
-
-
CALVIN-PWY
camphor degradation
-
-
Caprolactam degradation
-
-
carbaryl degradation
-
-
PWY-8111
carbazole degradation
-
-
PWY-6550
Carbon fixation in photosynthetic organisms
-
-
Carbon fixation pathways in prokaryotes
-
-
carbon tetrachloride degradation II
-
-
PWY-5372
catechol degradation to 2-hydroxypentadienoate I
-
-
P183-PWY
catechol degradation to 2-hydroxypentadienoate II
-
-
PWY-5419
catechol degradation to beta-ketoadipate
-
-
CATECHOL-ORTHO-CLEAVAGE-PWY
cellulose degradation
-
-
cellulose degradation II (fungi)
-
-
PWY-6788
ceramide and sphingolipid recycling and degradation (yeast)
-
-
PWY-7119
ceramide degradation by alpha-oxidation
-
-
PWY66-388
chitin deacetylation
-
-
PWY-7118
chitin degradation I (archaea)
-
-
PWY-6855
chitin degradation II (Vibrio)
-
-
PWY-6902
chitin degradation III (Serratia)
-
-
PWY-7822
chlorinated phenols degradation
-
-
PWY-6197
Chloroalkane and chloroalkene degradation
-
-
Chlorocyclohexane and chlorobenzene degradation
-
-
chlorogenic acid degradation
-
-
PWY-6781
chlorosalicylate degradation
-
-
PWY-6107
cholesterol degradation to androstenedione I (cholesterol oxidase)
-
-
PWY-6945
chorismate metabolism
-
-
cis-geranyl-CoA degradation
-
-
PWY-6672
Citrate cycle (TCA cycle)
-
-
citric acid cycle
-
-
CO2 fixation into oxaloacetate (anaplerotic)
-
-
PWYQT-4429
colupulone and cohumulone biosynthesis
-
-
PWY-5133
creatine phosphate biosynthesis
-
-
PWY-6158
creatinine degradation
-
-
creatinine degradation I
-
-
CRNFORCAT-PWY
cuticular wax biosynthesis
-
-
PWY-282
cutin biosynthesis
-
-
PWY-321
Cutin, suberine and wax biosynthesis
-
-
Cyanoamino acid metabolism
-
-
cyanophycin metabolism
-
-
PWY-7052
cyclohexanol degradation
Cysteine and methionine metabolism
-
-
D-galactose degradation II
-
-
GALDEG-PWY
d-mannose degradation
-
-
D-xylose degradation to ethylene glycol (engineered)
-
-
PWY-7178
degradation of aromatic, nitrogen containing compounds
-
-
degradation of pentoses
-
-
degradation of sugar acids
-
-
degradation of sugar alcohols
-
-
detoxification of reactive carbonyls in chloroplasts
-
-
PWY-6786
diacylglycerol and triacylglycerol biosynthesis
-
-
TRIGLSYN-PWY
dimethyl sulfide biosynthesis from methionine
-
-
PWY-7793
dimethyl sulfide degradation II (oxidation)
-
-
PWY-6059
Dioxin degradation
-
-
diphenyl ethers degradation
-
-
PWY-7747
dissimilatory sulfate reduction I (to hydrogen sufide))
-
-
DISSULFRED-PWY
docosahexaenoate biosynthesis III (6-desaturase, mammals)
-
-
PWY-7606
dopamine degradation
-
-
PWY6666-2
Drug metabolism - cytochrome P450
-
-
Drug metabolism - other enzymes
-
-
Entner Doudoroff pathway
-
-
Entner-Doudoroff pathway I
-
-
PWY-8004
Entner-Doudoroff pathway II (non-phosphorylative)
-
-
NPGLUCAT-PWY
Entner-Doudoroff pathway III (semi-phosphorylative)
-
-
PWY-2221
erythritol biosynthesis I
-
-
PWY-8372
erythritol biosynthesis II
-
-
PWY-8373
ethanol degradation I
-
-
ETOH-ACETYLCOA-ANA-PWY
ethanol degradation II
-
-
PWY66-21
ethanol degradation III
-
-
PWY66-161
ethanol degradation IV
-
-
PWY66-162
ethanol fermentation
-
-
ethanolamine utilization
-
-
PWY0-1477
ethene biosynthesis III (microbes)
-
-
PWY-6854
ethene biosynthesis IV (engineered)
-
-
PWY-7126
ethene biosynthesis V (engineered)
-
-
PWY-7124
Ethylbenzene degradation
-
-
fatty acid alpha-oxidation I (plants)
-
-
PWY-2501
fatty acid beta-oxidation I (generic)
-
-
FAO-PWY
fatty acid beta-oxidation II (plant peroxisome)
-
-
PWY-5136
fatty acid beta-oxidation IV (unsaturated, even number)
-
-
PWY-5138
fatty acid beta-oxidation VI (mammalian peroxisome)
-
-
PWY66-391
Fatty acid degradation
-
-
Fatty acid elongation
-
-
fatty acid salvage
-
-
PWY-7094
ferrichrome A biosynthesis
-
-
PWY-7571
Flavone and flavonol biosynthesis
-
-
Fluorobenzoate degradation
-
-
formaldehyde assimilation I (serine pathway)
-
-
PWY-1622
formaldehyde assimilation II (assimilatory RuMP Cycle)
-
-
PWY-1861
formaldehyde assimilation III (dihydroxyacetone cycle)
-
-
P185-PWY
Fructose and mannose metabolism
-
-
Galactose metabolism
-
-
gallate degradation
-
-
gentisate degradation I
-
-
PWY-6223
Geraniol degradation
-
-
gluconeogenesis
-
-
gluconeogenesis I
-
-
GLUCONEO-PWY
gluconeogenesis II (Methanobacterium thermoautotrophicum)
-
-
PWY-6142
gluconeogenesis III
-
-
PWY66-399
glucose and glucose-1-phosphate degradation
-
-
GLUCOSE1PMETAB-PWY
glucose degradation (oxidative)
-
-
DHGLUCONATE-PYR-CAT-PWY
glutamate and glutamine metabolism
-
-
glycerol degradation II
-
-
PWY-6131
glycerol degradation to butanol
-
-
PWY-7003
Glycerolipid metabolism
-
-
Glycine, serine and threonine metabolism
-
-
glycogen metabolism
-
-
glycolysis
-
-
Glycolysis / Gluconeogenesis
-
-
glycolysis I (from glucose 6-phosphate)
-
-
GLYCOLYSIS
glycolysis II (from fructose 6-phosphate)
-
-
PWY-5484
glycolysis III (from glucose)
-
-
ANAGLYCOLYSIS-PWY
glycolysis IV
-
-
PWY-1042
glycolysis V (Pyrococcus)
-
-
P341-PWY
Glycosaminoglycan degradation
-
-
Glycosphingolipid biosynthesis - ganglio series
-
-
Glycosphingolipid biosynthesis - globo and isoglobo series
-
-
Glyoxylate and dicarboxylate metabolism
-
-
glyoxylate cycle
-
-
GLYOXYLATE-BYPASS
guanosine ribonucleotides de novo biosynthesis
-
-
PWY-7221
heterolactic fermentation
-
-
P122-PWY
histamine degradation
-
-
PWY-6181
Histidine metabolism
-
-
histidine metabolism
-
-
hydrogen production VI
-
-
PWY-6780
hypotaurine degradation
-
-
PWY-7387
IAA biosynthesis
-
-
incomplete reductive TCA cycle
-
-
P42-PWY
indole glucosinolate activation (herbivore attack)
-
-
PWYQT-4476
indole-3-acetate biosynthesis II
-
-
PWY-581
indole-3-acetate biosynthesis III (bacteria)
-
-
PWY-3161
indole-3-acetate biosynthesis IV (bacteria)
-
-
PWY-5025
indole-3-acetate biosynthesis V (bacteria and fungi)
-
-
PWY-5026
Insect hormone biosynthesis
-
-
isoleucine metabolism
-
-
L-alanine degradation II (to D-lactate)
-
-
ALACAT2-PWY
L-arabinose degradation I
-
-
ARABCAT-PWY
L-arginine degradation II (AST pathway)
-
-
AST-PWY
L-arginine degradation X (arginine monooxygenase pathway)
-
-
ARGDEG-V-PWY
L-ascorbate biosynthesis IV (animals, D-glucuronate pathway)
-
-
PWY3DJ-35471
L-ascorbate biosynthesis VI (plants, myo-inositol pathway)
-
-
PWY-8142
L-ascorbate biosynthesis VIII (engineered pathway)
-
-
PWY-7165
L-aspartate degradation II (aerobic)
-
-
PWY-8291
L-aspartate degradation III (anaerobic)
-
-
PWY-8294
L-glutamate degradation I
-
-
GLUTAMATE-DEG1-PWY
L-glutamate degradation V (via hydroxyglutarate)
-
-
P162-PWY
L-glutamate degradation XI (reductive Stickland reaction)
-
-
PWY-8190
L-glutamine biosynthesis I
-
-
GLNSYN-PWY
L-isoleucine biosynthesis I (from threonine)
-
-
ILEUSYN-PWY
L-isoleucine biosynthesis II
-
-
PWY-5101
L-isoleucine biosynthesis III
-
-
PWY-5103
L-isoleucine biosynthesis IV
-
-
PWY-5104
L-isoleucine biosynthesis V
-
-
PWY-5108
L-isoleucine degradation II
-
-
PWY-5078
L-leucine degradation I
-
-
LEU-DEG2-PWY
L-leucine degradation III
-
-
PWY-5076
L-lysine degradation II (L-pipecolate pathway)
-
-
PWY66-425
L-lysine degradation XI
-
-
LYSINE-DEG1-PWY
L-methionine degradation III
-
-
PWY-5082
L-phenylalanine degradation II (anaerobic)
-
-
ANAPHENOXI-PWY
L-phenylalanine degradation III
-
-
PWY-5079
L-serine biosynthesis II
-
-
PWY-8011
L-tryptophan degradation V (side chain pathway)
-
-
PWY-3162
L-tryptophan degradation X (mammalian, via tryptamine)
-
-
PWY-6307
L-tyrosine biosynthesis II
-
-
PWY-3461
L-tyrosine degradation III
-
-
PWY3O-4108
L-valine biosynthesis
-
-
VALSYN-PWY
L-valine degradation II
-
-
PWY-5057
leucine metabolism
-
-
Limonene and pinene degradation
-
-
limonene degradation IV (anaerobic)
-
-
PWY-8029
Linoleic acid metabolism
-
-
lipid metabolism
-
-
long chain fatty acid ester synthesis (engineered)
-
-
PWY-6873
lupulone and humulone biosynthesis
-
-
PWY-5132
luteolin triglucuronide degradation
-
-
PWY-7445
Lysine degradation
-
-
m-cresol degradation
-
-
M-CRESOL-DEGRADATION-PWY
malate/L-aspartate shuttle pathway
-
-
MALATE-ASPARTATE-SHUTTLE-PWY
melatonin degradation I
-
-
PWY-6398
melibiose degradation
-
-
PWY0-1301
Metabolic pathways
-
-
metabolism of disaccharids
-
-
Metabolism of xenobiotics by cytochrome P450
-
-
Methane metabolism
-
-
Methanobacterium thermoautotrophicum biosynthetic metabolism
-
-
PWY-6146
methanogenesis from acetate
-
-
METH-ACETATE-PWY
methanol oxidation to carbon dioxide
-
-
PWY-7616
methanol oxidation to formaldehyde II
-
-
PWY-6510
methanol oxidation to formaldehyde IV
-
-
PWY-5506
methionine metabolism
-
-
methyl indole-3-acetate interconversion
-
-
PWY-6303
methyl ketone biosynthesis (engineered)
-
-
PWY-7007
methylaspartate cycle
methylgallate degradation
-
-
METHYLGALLATE-DEGRADATION-PWY
methylsalicylate degradation
-
-
PWY-6184, PWY18C3-24
Microbial metabolism in diverse environments
-
-
mitochondrial NADPH production (yeast)
-
-
PWY-7269
mixed acid fermentation
-
-
FERMENTATION-PWY
monoacylglycerol metabolism (yeast)
-
-
PWY-7420
Monobactam biosynthesis
-
-
NAD metabolism
-
-
Naphthalene degradation
-
-
naphthalene degradation (aerobic)
-
-
PWY-5427
nicotine degradation IV
-
-
PWY66-201
nicotine degradation V
-
-
PWY66-221
nitrate assimilation
-
-
Nitrogen metabolism
-
-
nitrogen remobilization from senescing leaves
-
-
PWY-6549
Nitrotoluene degradation
-
-
nocardicin A biosynthesis
-
-
PWY-7797
non-pathway related
-
-
noradrenaline and adrenaline degradation
-
-
PWY-6342
nucleoside and nucleotide degradation (archaea)
-
-
PWY-5532
nylon-6 oligomer degradation
-
-
P621-PWY
octane oxidation
oleandomycin activation/inactivation
-
-
PWY-6972
oleate beta-oxidation
-
-
PWY0-1337
oleate biosynthesis II (animals and fungi)
-
-
PWY-5996
Other glycan degradation
-
-
oxidative decarboxylation of pyruvate
-
-
Oxidative phosphorylation
-
-
oxidative phosphorylation
-
-
palmitoleate biosynthesis IV (fungi and animals)
-
-
PWY3O-1801
Pantothenate and CoA biosynthesis
-
-
partial TCA cycle (obligate autotrophs)
-
-
PWY-5913
Penicillin and cephalosporin biosynthesis
-
-
Pentose and glucuronate interconversions
-
-
Pentose phosphate pathway
-
-
pentose phosphate pathway
-
-
pentose phosphate pathway (non-oxidative branch) I
-
-
NONOXIPENT-PWY
pentose phosphate pathway (non-oxidative branch) II
-
-
PWY-8178
phenol degradation
-
-
phenol degradation I (aerobic)
-
-
PWY-5418
phenylacetate degradation (aerobic)
-
-
phenylacetate degradation I (aerobic)
-
-
PWY0-321
Phenylalanine metabolism
-
-
phenylalanine metabolism
-
-
Phenylalanine, tyrosine and tryptophan biosynthesis
-
-
phenylethanol biosynthesis
-
-
PWY-5751
phosphate acquisition
-
-
PWY-6348
photosynthesis
-
-
photosynthetic 3-hydroxybutanoate biosynthesis (engineered)
-
-
PWY-7218
phytol degradation
-
-
PWY66-389
platensimycin biosynthesis
-
-
PWY-8179
polybrominated dihydroxylated diphenyl ethers biosynthesis
-
-
PWY-7934
Polycyclic aromatic hydrocarbon degradation
-
-
polyhydroxybutanoate biosynthesis
-
-
PWY1-3
polyhydroxydecanoate biosynthesis
-
-
PWY-6657
polyphosphate metabolism
-
-
PWY-8138
porphyran degradation
-
-
PWY-6815
Porphyrin and chlorophyll metabolism
-
-
Propanoate metabolism
-
-
propanol degradation
-
-
protocatechuate degradation I (meta-cleavage pathway)
-
-
P184-PWY
protocatechuate degradation II (ortho-cleavage pathway)
-
-
PROTOCATECHUATE-ORTHO-CLEAVAGE-PWY
Purine metabolism
-
-
purine metabolism
-
-
putrescine degradation III
-
-
PWY-0
Pyrimidine metabolism
-
-
pyrimidine metabolism
-
-
pyruvate decarboxylation to acetyl CoA II
-
-
PWY-6970
pyruvate fermentation to butanol I
-
-
PWY-6583
pyruvate fermentation to ethanol I
-
-
PWY-5480
pyruvate fermentation to ethanol II
-
-
PWY-5486
pyruvate fermentation to ethanol III
-
-
PWY-6587
pyruvate fermentation to isobutanol (engineered)
-
-
PWY-7111
pyruvate fermentation to propanoate I
-
-
P108-PWY
Pyruvate metabolism
-
-
quinate degradation
-
-
quinate degradation I
-
-
QUINATEDEG-PWY
reactive oxygen species degradation
-
-
DETOX1-PWY-1
reductive acetyl coenzyme A pathway
-
-
reductive acetyl coenzyme A pathway I (homoacetogenic bacteria)
-
-
CODH-PWY
reductive glycine pathway of autotrophic CO2 fixation
-
-
PWY-8303
reductive TCA cycle I
-
-
P23-PWY
reductive TCA cycle II
-
-
PWY-5392
retinol biosynthesis
-
-
PWY-6857
Retinol metabolism
-
-
Riboflavin metabolism
-
-
Rubisco shunt
-
-
PWY-5723
salicin biosynthesis
-
-
PWY-6766
salicortin biosynthesis
-
-
PWY-6763
salicylate degradation I
-
-
PWY-6183
salidroside biosynthesis
-
-
PWY-6802
sedoheptulose bisphosphate bypass
-
-
PWY0-1517
selenate reduction
-
-
PWY-6932
Selenocompound metabolism
-
-
serine metabolism
-
-
serotonin degradation
-
-
PWY-6313
serotonin metabolism
-
-
shikimate degradation I
-
-
SHIKIMATEDEG-PWY
sophorosyloxydocosanoate deacetylation
-
-
SOPHOROSYLOXYDOCOSANOATE-DEG-PWY
sorbitol biosynthesis II
-
-
PWY-5530
sorgoleone biosynthesis
-
-
PWY-5987
Sphingolipid metabolism
-
-
sphingosine and sphingosine-1-phosphate metabolism
-
-
PWY3DJ-11470
Spodoptera littoralis pheromone biosynthesis
-
-
PWY-7656
spongiadioxin C biosynthesis
-
-
PWY-7935
sporopollenin precursors biosynthesis
-
-
PWY-6733
stachyose degradation
-
-
PWY-6527
Starch and sucrose metabolism
-
-
starch degradation
-
-
stearate biosynthesis I (animals)
-
-
PWY-5972
stearate biosynthesis III (fungi)
-
-
PWY3O-355
Steroid biosynthesis
-
-
Steroid degradation
-
-
Steroid hormone biosynthesis
-
-
sterol:steryl ester interconversion (yeast)
-
-
PWY-7424
Styrene degradation
-
-
suberin monomers biosynthesis
-
-
PWY-1121
sucrose biosynthesis I (from photosynthesis)
-
-
SUCSYN-PWY
sucrose degradation V (sucrose alpha-glucosidase)
-
-
PWY66-373
sulfate activation for sulfonation
-
-
PWY-5340
sulfate reduction
-
-
sulfite oxidation III
-
-
PWY-5278
Sulfur metabolism
-
-
superoxide radicals degradation
-
-
DETOX1-PWY
superpathway of fermentation (Chlamydomonas reinhardtii)
-
-
PWY4LZ-257
superpathway of glucose and xylose degradation
-
-
PWY-6901
superpathway of glyoxylate cycle and fatty acid degradation
-
-
PWY-561
superpathway of methylsalicylate metabolism
-
-
PWY18C3-25
syringate degradation
-
-
PWY-6339
Taurine and hypotaurine metabolism
-
-
TCA cycle I (prokaryotic)
-
-
TCA
TCA cycle II (plants and fungi)
-
-
PWY-5690
TCA cycle III (animals)
-
-
PWY66-398
TCA cycle IV (2-oxoglutarate decarboxylase)
-
-
P105-PWY
TCA cycle V (2-oxoglutarate synthase)
-
-
PWY-6969
TCA cycle VI (Helicobacter)
-
-
REDCITCYC
TCA cycle VII (acetate-producers)
-
-
PWY-7254
TCA cycle VIII (Chlamydia)
-
-
TCA-1
Thiamine metabolism
-
-
thymine degradation
-
-
PWY-6430
Toluene degradation
-
-
toluene degradation II (aerobic) (via 4-methylcatechol)
-
-
TOLUENE-DEG-3-OH-PWY
toluene degradation to 2-hydroxypentadienoate (via toluene-cis-diol)
-
-
TOLUENE-DEG-DIOL-PWY
toluene degradation to 2-hydroxypentadienoate I (via o-cresol)
-
-
TOLUENE-DEG-2-OH-PWY
toluene degradation to benzoate
-
-
TOLUENE-DEG-CATECHOL-PWY
traumatin and (Z)-3-hexen-1-yl acetate biosynthesis
-
-
PWY-5410
triacylglycerol degradation
-
-
LIPAS-PWY
Tryptophan metabolism
-
-
tryptophan metabolism
-
-
Tyrosine metabolism
-
-
tyrosine metabolism
-
-
uracil degradation I (reductive)
-
-
PWY-3982
valine metabolism
-
-
Valine, leucine and isoleucine biosynthesis
-
-
Valine, leucine and isoleucine degradation
-
-
valproate beta-oxidation
-
-
PWY-8182
vanillin and vanillate degradation II
-
-
PWY-7098
vanillin biosynthesis I
-
-
PWY-5665
vitamin B1 metabolism
-
-
wax esters biosynthesis I
-
-
PWY-5884
wax esters biosynthesis II
-
-
PWY-5885
Xylene degradation
-
-
xyloglucan degradation II (exoglucanase)
-
-
PWY-6807
ORGANISM
COMMENTARY hide
LITERATURE
UNIPROT
SEQUENCE DB
SOURCE
SOURCE TISSUE
ORGANISM
UNIPROT
COMMENTARY hide
LITERATURE
SOURCE
-
induction of enzyme formation by trans-cyclohexan-1,2-diol containing medium
Manually annotated by BRENDA team
-
induction of enzyme synthesis by growth in cyclohexanol containing medium
Manually annotated by BRENDA team
LOCALIZATION
ORGANISM
UNIPROT
COMMENTARY hide
GeneOntology No.
LITERATURE
SOURCE
additional information
-
determination of subcellular distribution, overview
-
Manually annotated by BRENDA team
LINKS TO OTHER DATABASES (specific for Acinetobacter sp.)