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Information on Organism Acidithiobacillus caldus

TaxTree of Organism Acidithiobacillus caldus
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EC NUMBER
COMMENTARY hide
preliminary BRENDA-supplied EC number
PATHWAY
BRENDA Link
KEGG Link
MetaCyc Link
(S)-lactate fermentation to propanoate, acetate and hydrogen
-
-
PWY-8086
2-nitrotoluene degradation
-
-
PWY-5641
aerobic respiration I (cytochrome c)
-
-
PWY-3781
aerobic respiration II (cytochrome c) (yeast)
-
-
PWY-7279
aerobic respiration III (alternative oxidase pathway)
-
-
PWY-4302
aerobic toluene degradation
-
-
Alanine, aspartate and glutamate metabolism
-
-
ammonia assimilation cycle I
-
-
PWY-6963
ammonia assimilation cycle II
-
-
PWY-6964
ammonia assimilation cycle III
-
-
AMMASSIM-PWY
anaerobic energy metabolism (invertebrates, mitochondrial)
-
-
PWY-7384
Arachidonic acid metabolism
-
-
arachidonic acid metabolism
-
-
Arginine and proline metabolism
-
-
Arginine biosynthesis
-
-
arsenate detoxification I
-
-
PWY-8264
arsenate detoxification III
-
-
PWY-8263
arsenic detoxification (plants)
-
-
PWY-8259
arsenic detoxification (yeast)
-
-
PWY-4621
arsenite to oxygen electron transfer
-
-
PWY-4521
arsenite to oxygen electron transfer (via azurin)
-
-
PWY-7429
assimilatory sulfate reduction I
-
-
SO4ASSIM-PWY
assimilatory sulfate reduction II
-
-
SULFMETII-PWY
assimilatory sulfate reduction III
-
-
PWY-6683
assimilatory sulfate reduction IV
-
-
PWY1ZNC-1
ATP biosynthesis
-
-
PWY-7980
Benzoate degradation
-
-
beta-Alanine metabolism
-
-
Biosynthesis of secondary metabolites
-
-
Butanoate metabolism
-
-
Carbon fixation in photosynthetic organisms
-
-
Carbon fixation pathways in prokaryotes
-
-
catechol degradation to 2-hydroxypentadienoate I
-
-
P183-PWY
catechol degradation to 2-hydroxypentadienoate II
-
-
PWY-5419
Chlorocyclohexane and chlorobenzene degradation
-
-
Citrate cycle (TCA cycle)
-
-
citric acid cycle
-
-
coenzyme B/coenzyme M regeneration I (methanophenazine-dependent)
-
-
PWY-5207
coenzyme B/coenzyme M regeneration II (ferredoxin-dependent)
-
-
PWY-7865
coenzyme M biosynthesis
-
-
Cysteine and methionine metabolism
-
-
D-lactate to cytochrome bo oxidase electron transfer
-
-
PWY0-1565
dissimilatory sulfate reduction I (to hydrogen sufide))
-
-
DISSULFRED-PWY
Fe(II) oxidation
-
-
PWY-6692
GABA shunt I
-
-
GLUDEG-I-PWY
GABA shunt II
-
-
PWY-8346
glutamate and glutamine metabolism
-
-
Glutathione metabolism
-
-
glutathione-peroxide redox reactions
-
-
PWY-4081
glycerol-3-phosphate to cytochrome bo oxidase electron transfer
-
-
PWY0-1561
glycerol-3-phosphate to fumarate electron transfer
-
-
PWY0-1582
Glycolysis / Gluconeogenesis
-
-
Glyoxylate and dicarboxylate metabolism
-
-
hydrogen to fumarate electron transfer
-
-
PWY0-1576
incomplete reductive TCA cycle
-
-
P42-PWY
L-aspartate degradation II (aerobic)
-
-
PWY-8291
L-aspartate degradation III (anaerobic)
-
-
PWY-8294
L-glutamate degradation IX (via 4-aminobutanoate)
-
-
PWY0-1305
L-glutamine biosynthesis I
-
-
GLNSYN-PWY
lipid A biosynthesis
-
-
lipid A-core biosynthesis (E. coli K-12)
-
-
LIPA-CORESYN-PWY
lipid metabolism
-
-
Metabolic pathways
-
-
Methane metabolism
-
-
methylaspartate cycle
Microbial metabolism in diverse environments
-
-
mixed acid fermentation
-
-
FERMENTATION-PWY
Monobactam biosynthesis
-
-
NADH to cytochrome bo oxidase electron transfer I
-
-
PWY0-1335
NADH to cytochrome bo oxidase electron transfer II
-
-
PWY0-1567
NADH to fumarate electron transfer
-
-
PWY0-1336
NADPH to cytochrome c oxidase via plastocyanin
-
-
PWY-8271
Nitrogen metabolism
-
-
non-pathway related
-
-
Oxidative phosphorylation
-
-
oxidative phosphorylation
-
-
partial TCA cycle (obligate autotrophs)
-
-
PWY-5913
phenol degradation
-
-
Photosynthesis
-
-
photosynthesis
-
-
polyamine pathway
-
-
Porphyrin and chlorophyll metabolism
-
-
proline to cytochrome bo oxidase electron transfer
-
-
PWY0-1544
propionate fermentation
-
-
Purine metabolism
-
-
pyruvate fermentation to propanoate I
-
-
P108-PWY
pyruvate to cytochrome bo oxidase electron transfer
-
-
PWY-7544
reactive oxygen species degradation
-
-
DETOX1-PWY-1
reductive TCA cycle I
-
-
P23-PWY
reductive TCA cycle II
-
-
PWY-5392
selenate reduction
-
-
PWY-6932
Selenocompound metabolism
-
-
spermidine biosynthesis I
-
-
BSUBPOLYAMSYN-PWY
Starch and sucrose metabolism
-
-
Styrene degradation
-
-
succinate to chytochrome c oxidase via cytochrome c6
-
-
PWY1YI0-2
succinate to cytochrome bd oxidase electron transfer
-
-
PWY0-1353
succinate to cytochrome bo oxidase electron transfer
-
-
PWY0-1329
succinate to cytochrome c oxidase via plastocyanin
-
-
PWY1YI0-3
succinate to plastoquinol oxidase
-
-
PWY1YI0-8
sucrose degradation II (sucrose synthase)
-
-
PWY-3801
sulfate activation for sulfonation
-
-
PWY-5340
sulfate reduction
-
-
sulfide oxidation I (to sulfur globules)
-
-
P222-PWY
sulfide oxidation III (to sulfite)
-
-
PWY-5285
sulfide oxidation IV (mitochondria)
-
-
PWY-7927
sulfite oxidation III
-
-
PWY-5278
sulfite oxidation IV (sulfite oxidase)
-
-
PWY-5326
sulfur disproportionation II (aerobic)
-
-
PWY-5302
Sulfur metabolism
-
-
superpathway of glyoxylate cycle and fatty acid degradation
-
-
PWY-561
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
thiosulfate disproportionation IV (rhodanese)
-
-
PWY-5350
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
Xylene degradation
-
-
SOURCE TISSUE
ORGANISM
UNIPROT
COMMENTARY hide
LITERATURE
SOURCE
additional information
optimal growth at 45°C
Manually annotated by BRENDA team
LOCALIZATION
ORGANISM
UNIPROT
COMMENTARY hide
GeneOntology No.
LITERATURE
SOURCE
LINKS TO OTHER DATABASES (specific for Acidithiobacillus caldus)
: 127