4.2.1.82: xylonate dehydratase
This is an abbreviated version!
For detailed information about xylonate dehydratase, go to the full flat file.
Word Map on EC 4.2.1.82
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4.2.1.82
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caulobacter
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crescentus
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d-xylose
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glycol
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biomass
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1,2,4-butanetriol
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aldolase
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semialdehyde
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pentose
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putida
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2-keto
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ethylene
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dehydration
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azospirillum
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leguminosarum
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halophilic
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dahms
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alpha-ketoglutarate
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haloferax
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lactococcus
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rhizobium
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fe-s
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6-phosphogluconate
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2-ketoacid
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four-step
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pentonate
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trifolii
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volcanii
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brasilense
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lactis
- 4.2.1.82
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caulobacter
- crescentus
- d-xylose
- glycol
- biomass
- 1,2,4-butanetriol
- aldolase
- semialdehyde
- pentose
- putida
-
2-keto
- ethylene
- dehydration
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azospirillum
-
leguminosarum
-
halophilic
-
dahms
- alpha-ketoglutarate
-
haloferax
-
lactococcus
-
rhizobium
- fe-s
- 6-phosphogluconate
-
2-ketoacid
-
four-step
-
pentonate
- trifolii
- volcanii
- brasilense
- lactis
Reaction
Synonyms
CcXyDHT, D-xylo-aldonate dehydratase, D-xylonate dehydratase, dehydratase, D-xylonate, XAD, XYLD, xylonate dehydratase, YjhG
ECTree
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General Information
General Information on EC 4.2.1.82 - xylonate dehydratase
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malfunction
in-frame deletion mutant has lost its ability to grow on xylose, but it shows the same phenotype as the wild-type during growth on glucose
metabolism
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is essential for establishing an oxidative D-xylose catabolic pathway in Pseudomonas putida S12, but coexpression of the putative 2-keto-3-deoxy-D-xylonate dehydratase (XylX) improves the biomass yield by approximately 10%, while the growth rate is not altered. When XylA, catalyzing the next and final step in the pathway, is also coexpressed, both the biomass yield and the maximum growth rate increase. Lower-pathway activities of strains S12xylXD and S12xylD, which rely on endogenous semialdehyde dehydrogenase, are about one-half the activity of the strain that coexpresses the alpha-KGSA dehydrogenase (S12xylXAD)
metabolism
the enzyme is involved in a nonphosphorylative oxidation pathway of pentose sugars
metabolism
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the enzyme is involved in a nonphosphorylative oxidation pathway of pentose sugars
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