2.7.1.17: xylulokinase
This is an abbreviated version!
For detailed information about xylulokinase, go to the full flat file.
Word Map on EC 2.7.1.17
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2.7.1.17
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xylose
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xylitol
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mcleod
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pentose
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stipitis
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lignocellulosic
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x-linked
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xylose-fermenting
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acanthocytosis
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neuroacanthocytosis
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xylose-utilizing
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l-arabinose
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transaldolase
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xylose-metabolizing
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xylazine
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co-fermentation
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acanthocyte
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xylulose-5-phosphate
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bioethanol
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chorea-acanthocytosis
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biotechnology
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synthesis
- 2.7.1.17
- xylose
- xylitol
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mcleod
- pentose
- stipitis
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lignocellulosic
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x-linked
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xylose-fermenting
- acanthocytosis
- neuroacanthocytosis
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xylose-utilizing
- l-arabinose
- transaldolase
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xylose-metabolizing
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xylazine
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co-fermentation
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acanthocyte
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xylulose-5-phosphate
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bioethanol
- chorea-acanthocytosis
- biotechnology
- synthesis
Reaction
Synonyms
1-deoxy-D-xylulokinase, ATP/polyphosphate xylulokinase, D-xululokinase, D-xylulokinase, D-xylulose kinase, DXK, Huta_2446, kinase (phosphorylating), xylulo, kinase, xylulo- (phosphorylating), TM0116, XK, XK-1, XKS1, XyiH, XYL3, XylB, xylokinase(phosphorylating), xylulokinase
ECTree
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General Information
General Information on EC 2.7.1.17 - xylulokinase
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malfunction
metabolism
physiological function
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engineered Saccharomyces cerevisiae overexpressing GRE3, XYL2, and XYL3 can ferment xylose as well as a mixture of glucose and xylose with higher ethanol yields and productivities than those of an isogenic strain overexpressing XYL1, XYL2, and XYL3 under oxygen-limited conditions
disruption of XYL3 results in both loss of xylitol utilization and marked decrease in xylose utilization
malfunction
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disruption of XYL3 results in both loss of xylitol utilization and marked decrease in xylose utilization
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the enzyme catalyses the last step of the glucuronate-xylulose pathway
metabolism
the enzyme is critical for xylose and xylitol utilization
metabolism
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the enzyme is critical for xylose and xylitol utilization
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