2.7.2.7: butyrate kinase
This is an abbreviated version!
For detailed information about butyrate kinase, go to the full flat file.
Word Map on EC 2.7.2.7
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2.7.2.7
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clostridium
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acetobutylicum
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phosphotransbutyrylase
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butanol
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butyrate-producing
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butyryl-coa
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butyryl
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coa-transferase
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solventogenesis
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acidogenic
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phosphotransacetylase
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butyryl-coa:acetate
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askha
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solventogenic
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roseburia
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acetone-butanol-ethanol
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faecalibacterium
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nutrition
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biotechnology
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synthesis
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industry
- 2.7.2.7
- clostridium
- acetobutylicum
- phosphotransbutyrylase
- butanol
-
butyrate-producing
- butyryl-coa
-
butyryl
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coa-transferase
-
solventogenesis
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acidogenic
- phosphotransacetylase
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butyryl-coa:acetate
-
askha
-
solventogenic
- roseburia
-
acetone-butanol-ethanol
-
faecalibacterium
- nutrition
- biotechnology
- synthesis
- industry
Reaction
Synonyms
BK, BKI, BKII, Buk, buk1, Buk2, butyrate kinase, butyrate kinase 2, butyrate kinase I, butyrate kinase II, butyrokinase, kinase (phosphorylating), butyrate, kinase, butyrate (phosphorylating)
ECTree
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Substrates Products
Substrates Products on EC 2.7.2.7 - butyrate kinase
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REACTION DIAGRAM
ATP + isovalerate
ADP + isopentanoyl phosphate
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32% of the activity with butanoate
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?
ATP + vinyl acetate
ADP + vinylacetyl phosphate
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23% of the activity with butanoate
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-
?
ADP + 2-ethylbutyryl phosphate
2.0% activity compared to valerate
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-
?
ATP + 2-ethylbutyrate
ADP + 2-ethylbutyryl phosphate
2.0% activity compared to valerate
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-
?
ADP + 2-methylbutyryl phosphate
22.8% activity compared to valerate
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-
?
ATP + 2-methylbutyrate
ADP + 2-methylbutyryl phosphate
22.8% activity compared to valerate
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-
?
ADP + 2-methylpentanoyl phosphate
7.8% activity compared to valerate
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-
?
ADP + acetyl phosphate
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6% of the activity with butanoate
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-
?
ATP + acetate
ADP + acetyl phosphate
3.8% activity compared to valerate
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-
?
ATP + acetate
ADP + acetyl phosphate
3.8% activity compared to valerate
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-
?
ADP + butanoyl phosphate
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-
-
-
?
ATP + butanoate
ADP + butanoyl phosphate
52.3% activity compared to valerate
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-
?
ATP + butanoate
ADP + butanoyl phosphate
52.3% activity compared to valerate
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-
?
ADP + hexanoyl phosphate
16.3% activity compared to valerate
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-
?
ADP + isobutanoyl phosphate
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54% of the activity with butanoate
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-
?
ATP + isobutanoate
ADP + isobutanoyl phosphate
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50% of the activity with butanoate
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-
?
ADP + isobutyroyl phosphate
43.1% activity compared to valerate
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-
?
ATP + isobutyrate
ADP + isobutyroyl phosphate
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second best substrate
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-
?
ADP + isovaleroyl phosphate
32.1% activity compared to valerate
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-
?
ADP + propanoyl phosphate
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43% of the activity with butanoate
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-
?
ATP + propionate
ADP + propanoyl phosphate
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as active as butanoate
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-
?
ADP + propionyl phosphate
60.8% activity compared to valerate
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-
?
ATP + propionate
ADP + propionyl phosphate
60.8% activity compared to valerate
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-
?
ADP + pentanoyl phosphate
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89% of the activity with butanoate
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-
?
ATP + valerate
ADP + pentanoyl phosphate
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12% of the activity with butanoate
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-
?
?
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the enzyme is not regulated by the end-product, its specific activity is constant during the fermentation
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additional information
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semi-automated reverse engineering algorithm. The reconstructed metabolic network was used to create a genome-scale model that correctly characterized the butyrate kinase knock-out and the asolventogenic M5 pSOL1 megaplasmid degenerate strains. Systematic gene knock-out simulations performed to identify a set of genes encoding clostridial enzymes essential for growth in silico.
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additional information
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overexpressed PhaP1 from Ralstonia eutropha H16 affected poly(3-mercaptopropionate) [poly(3MP)] and poly(3-hydroxybutyrate) [poly(3HB)] accumulation in recombinant Escherichia coli, which expresses the non-natural BPEC pathway consisting of butyrate kinase and phosphotransbutyrylase from Clostridium acetobutylicum and PHA synthase from Thiococcus pfennigii
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?
additional information
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enzyme is involved in production of butyrate
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?