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T0581

Sigma-Aldrich

Transglutaminase from guinea pig liver

≥1.5 units/mg protein, recombinant, expressed in E. coli

Synonyme(s) :

TGase

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About This Item

Numéro de classification (Commission des enzymes):
Code UNSPSC :
12352204
Nomenclature NACRES :
NA.54

Produit recombinant

expressed in E. coli

Niveau de qualité

Activité spécifique

≥1.5 units/mg protein

Conditions d'expédition

dry ice

Température de stockage

−20°C

Application

10 mM calcium chloride is used for activation of the enzyme.
Transglutaminase has been used in a study to improve quantifiable assays to fully characterize the role of transglutaminase in diseases such as Huntington′s disease and Alzheimer′s disease.Transglutaminase has also been used in a study to develop a nonradioactive dot blot assay for transglutaminase activity.

Définition de l'unité

One unit will catalyze the formation of 1.0 μmole of hydroxamate per minute from Nα-Z-Gln-Gly and hydroxylamine at pH 6.0 at 37 °C. (L-Glutamic acid γ-monohydroxamate is the standard.)

Forme physique

Lyophilized from 10 mM NaH2PO4, 150 mM NaCl, pH 8. Contains maltodextrin.

Pictogrammes

Exclamation mark

Mention d'avertissement

Warning

Mentions de danger

Classification des risques

Eye Irrit. 2

Code de la classe de stockage

11 - Combustible Solids

Classe de danger pour l'eau (WGK)

WGK 3

Point d'éclair (°F)

Not applicable

Point d'éclair (°C)

Not applicable


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Les clients ont également consulté

C M Becker et al.
Archives of biochemistry and biophysics, 223(2), 381-392 (1983-06-01)
Valproic acid (dipropylacetic acid), an antiepileptic agent known to be hepatotoxic in some patients, caused inhibition of lactate gluconeogenesis, fatty acid oxidation, and fatty acid synthesis by isolated hepatocytes. The latter process was the most sensitive to valproic acid, 50%
M Kelley et al.
Biochemical pharmacology, 35(2), 289-295 (1986-01-15)
The amino acid conjugation of the phenoxyherbicides 2,4-dichlorophenoxyacetate (2,4-D) and 2,4,5-trichlorophenoxyacetate (2,4,5-T) by animals was examined at the level of the enzymes catalyzing the reactions. The phenoxyherbicides were not substrates for the bile acid conjugating system but were substrates for
Acyl-CoA esters of xenobiotic carboxylic acids as biochemically active intermediates.
H S Sherratt
Biochemical Society transactions, 13(5), 856-858 (1985-10-01)
M Kelley et al.
Journal of biochemical toxicology, 5(2), 125-135 (1990-01-01)
The aralkyl-CoA:glycine N-acyltransferase and the arylacetyl-CoA:amino acid of N-acyltransferase were purified from bovine liver mitochondria and their response to a variety of ions investigated. The activity of the aralkyl transferase was inhibited by divalent cations with all substrates investigated. For
K D MacDermot et al.
Developmental pharmacology and therapeutics, 3(3), 150-159 (1981-01-01)
We report investigations of benzoate and glycine metabolism and glycine acyltransferase activity in rats. These studies provide insights related to the therapy and pathophysiology of human nonketotic hyperglycinemia. Liver acyltransferase activity increased sharply postnatally from low levels at birth, but

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