1. Metabolic Enzyme/Protease
  2. Endogenous Metabolite
  3. UDP-xylose

UDP-xylose is an endogenous sugar nucleotide and a catalytic substrate of UDP-xylose synthase (UXS). UDP-xylose is a sugar donor for the synthesis of glycoproteins, polysaccharides, various metabolites and oligosaccharides in plants, vertebrates and fungi, and participates in the synthesis of proteoglycans as a glycosyl donor. UDP-xylose participates in the regulation of the synthesis of extracellular matrix components and can be used to study the mechanism of proteoglycan biosynthesis in glycobiology and related diseases (such as connective tissue diseases)[1][2].

It is advisable to consider the salt form (UDP-xylose disodium) that retains the same biological activity.

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UDP-xylose

UDP-xylose Chemische Struktur

CAS. Nr. : 3616-06-6

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Other Forms of UDP-xylose:

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Beschreibung

UDP-xylose is an endogenous sugar nucleotide and a catalytic substrate of UDP-xylose synthase (UXS). UDP-xylose is a sugar donor for the synthesis of glycoproteins, polysaccharides, various metabolites and oligosaccharides in plants, vertebrates and fungi, and participates in the synthesis of proteoglycans as a glycosyl donor. UDP-xylose participates in the regulation of the synthesis of extracellular matrix components and can be used to study the mechanism of proteoglycan biosynthesis in glycobiology and related diseases (such as connective tissue diseases)[1][2].

In Vitro

UDP-xylose can be generated from UDP-Glc in recombinant yeast cytoplasmic extracts catalyzed by AtUGD1 and AtUXS3[1].

MedChemExpress (MCE) has not independently confirmed the accuracy of these methods. They are for reference only.

Molekulargewicht

536.28

Formel

C14H22N2O16P2

CAS. Nr.
SMILES

O[C@H]([C@H]([C@@H](CO1)O)O)[C@H]1OP(OP(OC[C@@H]2[C@@H](O)[C@@H](O)[C@H](N3C(NC(C=C3)=O)=O)O2)(O)=O)(O)=O

Structure Classification
Initial Source

Cryptococcus laurentii (N RRL Y-1401)

Versand

Room temperature in continental US; may vary elsewhere.

Speicherung

Please store the product under the recommended conditions in the Certificate of Analysis.

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Concentration (start) × Volume (start) = Concentration (final) × Volume (final)
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