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Literature summary for 1.1.1.175 extracted from

  • Dahms, A.S.; Russo, J.
    D-Xylose dehydrogenase (1982), Methods Enzymol., 89, 226-228.
    View publication on PubMed

General Stability

General Stability Organism
thermolabile, stabilizing: substrates or high ionic strength Pseudomonas sp.

KM Value [mM]

KM Value [mM] KM Value Maximum [mM] Substrate Comment Organism Structure
0.2
-
NAD+
-
Pseudomonas sp.
0.5
-
D-xylose
-
Pseudomonas sp.

Natural Substrates/ Products (Substrates)

Natural Substrates Organism Comment (Nat. Sub.) Natural Products Comment (Nat. Pro.) Rev. Reac.
D-xylose + NAD+ Pseudomonas sp. highly specific for both substrates D-xylonolactone + NADH + H+
-
?
D-xylose + NAD+ Pseudomonas sp. MSU-1 highly specific for both substrates D-xylonolactone + NADH + H+
-
?

Organism

Organism UniProt Comment Textmining
Pseudomonas sp.
-
-
-
Pseudomonas sp. MSU-1
-
-
-

Purification (Commentary)

Purification (Comment) Organism
NAD+-affinity chromatography Pseudomonas sp.

Source Tissue

Source Tissue Comment Organism Textmining
culture condition:D-xylose-grown cell inducible enzyme synthesis by growth in D-xylose-containing medium Pseudomonas sp.
-

Specific Activity [micromol/min/mg]

Specific Activity Minimum [µmol/min/mg] Specific Activity Maximum [µmol/min/mg] Comment Organism
60.3
-
-
Pseudomonas sp.

Storage Stability

Storage Stability Organism
frozen, addition of DTT, several weeks Pseudomonas sp.

Substrates and Products (Substrate)

Substrates Comment Substrates Organism Products Comment (Products) Rev. Reac.
D-xylose + NAD+ highly specific for both substrates Pseudomonas sp. D-xylonolactone + NADH + H+
-
?
D-xylose + NAD+ highly specific for both substrates Pseudomonas sp. MSU-1 D-xylonolactone + NADH + H+
-
?

Temperature Stability [°C]

Temperature Stability Minimum [°C] Temperature Stability Maximum [°C] Comment Organism
32
-
half-life: 2 min Pseudomonas sp.

pH Optimum

pH Optimum Minimum pH Optimum Maximum Comment Organism
8
-
-
Pseudomonas sp.

Cofactor

Cofactor Comment Organism Structure
NAD+ cannot be replaced by NADP+ Pseudomonas sp.