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Literature summary extracted from

  • Shimokawa, T.; Yoshida, S.; Kusakabe, I.
    Effects of unsaturated uronic acid residues at non-reducing end on bond cleavage frequency of poly(1,4-alpha-L-guluronide) lyase from Enterobacter cloacae M-1 (1998), Biosci. Biotechnol. Biochem., 62, 164-166.
No PubMed abstract available

Organism

EC Number Organism UniProt Comment Textmining
4.2.2.11 Enterobacter cloacae
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strain M-1,intracellular and extracellular enzyme
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4.2.2.11 Enterobacter cloacae M-1intracellular
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strain M-1,intracellular and extracellular enzyme
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4.2.2.11 Sphingobacterium multivorum
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K-11
-
4.2.2.11 Sphingobacterium multivorum K-11
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K-11
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Substrates and Products (Substrate)

EC Number Substrates Comment Substrates Organism Products Comment (Products) Rev. Reac.
4.2.2.11 alpha-L-guluronosyl linkage in alginate
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Enterobacter cloacae ?
-
?
4.2.2.11 alpha-L-guluronosyl linkage in alginate
-
Sphingobacterium multivorum ?
-
?
4.2.2.11 alpha-L-guluronosyl linkage in alginate
-
Enterobacter cloacae M-1intracellular ?
-
?
4.2.2.11 alpha-L-guluronosyl linkage in alginate
-
Sphingobacterium multivorum K-11 ?
-
?
4.2.2.11 saturated penta((1-4)-alpha-L-guluronan) degraded slower than unsaturated oligoguluronans with the same degree of polymerization, completely different cleavage pattern Enterobacter cloacae ?
-
?
4.2.2.11 saturated penta((1-4)-alpha-L-guluronan) degraded slower than unsaturated oligoguluronans with the same degree of polymerization, completely different cleavage pattern Enterobacter cloacae M-1intracellular ?
-
?
4.2.2.11 unsaturated hepta((1-4)-alpha-L-guluronan)
-
Enterobacter cloacae ?
-
?
4.2.2.11 unsaturated hepta((1-4)-alpha-L-guluronan)
-
Enterobacter cloacae M-1intracellular ?
-
?
4.2.2.11 unsaturated hexa((1-4)-alpha-L-guluronan) the enzyme degrades unsaturated hexaguluronans faster than saturated hexaguluronans, its subsite number appears to be seven Enterobacter cloacae unsaturated triguluronic acid + unsaturated tetraguluronic acid unsaturated trimers are the mayor product ?
4.2.2.11 unsaturated hexa((1-4)-alpha-L-guluronan) the enzyme degrades unsaturated hexaguluronans faster than saturated hexaguluronans, its subsite number appears to be seven Enterobacter cloacae M-1intracellular unsaturated triguluronic acid + unsaturated tetraguluronic acid unsaturated trimers are the mayor product ?
4.2.2.11 unsaturated pentaguluronan also degrades unsaturated hexa- and hepta-guluronans, not unsaturated oligoguluronans with degree of polymerization less than four, cleaves the second glycosidic linkage from the non-reducing end of unsaturated pentaguluronans and heptaguluronans Enterobacter cloacae ?
-
?
4.2.2.11 unsaturated pentaguluronan also degrades unsaturated hexa- and hepta-guluronans, not unsaturated oligoguluronans with degree of polymerization less than four, cleaves the second glycosidic linkage from the non-reducing end of unsaturated pentaguluronans and heptaguluronans Enterobacter cloacae M-1intracellular ?
-
?