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2-Keto-D-Glucose (CAS 1854-25-7)

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Application:
2-Keto-D-Glucose is a useful synthetic intermediate
CAS Number:
1854-25-7
Purity:
≥95%
Molecular Weight:
178.05
Molecular Formula:
C6H10O6
For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.
* Refer to Certificate of Analysis for lot specific data.

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2-Keto-D-Glucose is a useful synthetic intermediate. It serves as a precursor for synthesizing other sugars, such as D-xylose and D-lyxose. Its significance extends to scientific research, where it has been employed to explore the influence of sugar on bacterial growth and development, gene expression regulation, metabolic pathway regulation, and cell signaling regulation.


2-Keto-D-Glucose (CAS 1854-25-7) References

  1. Double oxidation of D-xylose to D-glycero -pentos-2,3-diulose (2,3-diketo-D-xylose) by pyranose dehydrogenase from the mushroom Agaricus bisporus.  |  Volc, J., et al. 2000. Carbohydr Res. 329: 219-25. PMID: 11086703
  2. Fungal pyranose oxidases: occurrence, properties and biotechnical applications in carbohydrate chemistry.  |  Giffhorn, F. 2000. Appl Microbiol Biotechnol. 54: 727-40. PMID: 11152063
  3. Kinetic model discrimination via step-by-step experimental and computational procedure in the enzymatic oxidation of D-glucose.  |  Treitz, G., et al. 2001. J Biotechnol. 85: 271-87. PMID: 11173094
  4. Kinetic mechanism of pyranose 2-oxidase from trametes multicolor.  |  Prongjit, M., et al. 2009. Biochemistry. 48: 4170-80. PMID: 19317444
  5. Regioselective control of β-d-glucose oxidation by pyranose 2-oxidase is intimately coupled to conformational degeneracy.  |  Tan, TC., et al. 2011. J Mol Biol. 409: 588-600. PMID: 21515286
  6. A novel pyrroloquinoline quinone-dependent 2-keto-D-glucose dehydrogenase from Pseudomonas aureofaciens.  |  Umezawa, K., et al. 2015. J Bacteriol. 197: 1322-9. PMID: 25645559
  7. Purification, characterization and gene identification of a membrane-bound glucose dehydrogenase from 2-keto-d-gluconic acid industrial producing strain Pseudomonas plecoglossicida JUIM01.  |  Wang, DM., et al. 2018. Int J Biol Macromol. 118: 534-541. PMID: 29940229
  8. Fungal PQQ-dependent dehydrogenases and their potential in biocatalysis.  |  Takeda, K., et al. 2019. Curr Opin Chem Biol. 49: 113-121. PMID: 30580186
  9. Purification and characterization of a pyranose oxidase from the basidiomycete Peniophora gigantea and chemical analyses of its reaction products.  |  Danneel, HJ., et al. 1993. Eur J Biochem. 214: 795-802. PMID: 8319689
  10. Only C-2 specific glucose oxidase activity is expressed in ligninolytic cultures of the white rot fungus Phanerochaete chrysosporium.  |  Volc, J., et al. 1996. Arch Microbiol. 165: 421-4. PMID: 8661938
  11. Laboratory procedures for producing 2-keto-d-glucose, 2-keto-d-xylose and 5-keto-d-fructose from d-glucose, d-xylose and l-sorbose with immobilized pyranose oxidase of Peniophora gigantea  |  A Huwig, HJ Danneel, F Giffhorn. 28 February 1994,. Journal of Biotechnology. Volume 32, Issue 3,: Pages 309-315.
  12. Conversion of d-glucose to d-erythro-hexos-2,3-diulose (2,3-diketo-d-glucose) by enzyme preparations from the basidiomycete Oudemansiella mucida  |  J Volc, P Sedmera, V Havlíček, V Přikrylová… -. 30 November 1995,. Carbohydrate Research. Volume 278, Issue 1,: Pages 59-70.
  13. The Cetus Process Revisited: A Novel Enzymatic Alternative for the Production of Aldose-Free D-Fructose  |  Christian Leitner, et al. Received 16 Apr 1998, Published online: 11 Jul 2009. Biocatalysis and Biotransformation. Volume 16,Issue 5: Pages 365-382.

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

2-Keto-D-Glucose, 100 mg

sc-220745
100 mg
$526.00