91252
2-Deoxyribose 5-phosphate Aldolase, E. coli K12, recombinant K12 from E. coli
≥2 U/mg
Synonyme(s) :
DERA, Deoxyriboaldolase
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About This Item
Produits recommandés
Produit recombinant
expressed in E. coli
Forme
crystals
powder
Activité spécifique
≥2 U/mg
Conditions d'expédition
wet ice
Température de stockage
−20°C
Actions biochimiques/physiologiques
Deoxyriboaldolase catalyzes the condensation of acetaldehyde and glyceraldehyde 3-phosphate to 2-deoxyribose 5-phosphate.
Définition de l'unité
1 U entspricht der Enzymmenge, die 1 μmol 2-Deoxy-d-ribose-5-phosphat pro Minute bei pH 7.5 und 25°C umsetzt
Autres remarques
The enzyme catalyzes the reversible cleavage of 2-deoxyribose-5-phosphate to acetaldehyde and D-glyceraldehyde-3-phosphate
Code de la classe de stockage
13 - Non Combustible Solids
Classe de danger pour l'eau (WGK)
WGK 3
Point d'éclair (°F)
Not applicable
Point d'éclair (°C)
Not applicable
Équipement de protection individuelle
Eyeshields, Gloves, type N95 (US)
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Molecular and biochemical parasitology, 173(1), 39-42 (2010-05-04)
The Toxoplasma gondii deoxyribose phosphate aldolase-like (TgDPA) gene is expressed predominantly in bradyzoites. This finding allowed us to infer that TgDPA is important in the tachyzoite-to-bradyzoite development or maintenance of cyst structure although the function of this gene is still
Experimental parasitology, 121(1), 55-63 (2008-10-28)
Toxoplasma gondii undergoes stage conversion from tachyzoites to bradyzoites in intermediate hosts. There have been many reports on bradyzoite-specific genes which are thought to be involved in stage conversion. Here, we described a novel T. gondii deoxyribose phosphate aldolase-like gene
Journal of microbiology and biotechnology, 20(6), 995-1000 (2010-07-14)
A novel deoC gene was identified from Paenibacillus sp. EA001 isolated from soil. The gene had an open reading frame (ORF) of 663 base pairs encoding 220 amino acids with a molecular mass of 24.5 kDa. The amino acid sequence
Proceedings of the National Academy of Sciences of the United States of America, 99(14), 9150-9153 (2002-06-27)
Selenium can be metabolized for protein synthesis by two major pathways in vivo. In a specific pathway it can be inserted into polypeptide chains as the amino acid selenocysteine, as directed by the UGA codon. Alternatively, selenium can be substituted
Bioscience, biotechnology, and biochemistry, 70(6), 1371-1378 (2006-06-24)
2-Deoxyribose 5-phosphate production through coupling of the alcoholic fermentation system of baker's yeast and deoxyriboaldolase-expressing Escherichia coli was investigated. In this process, baker's yeast generates fructose 1,6-diphosphate from glucose and inorganic phosphate, and then the E. coli convert the fructose
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