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Results for "

UDP sugars

" in MedChemExpress (MCE) Product Catalog:

22

Inhibitors & Agonists

4

Biochemical Assay Reagents

1

Peptides

10

Natural
Products

1

Isotope-Labeled Compounds

2

Click Chemistry

1

Oligonucleotides

Targets Recommended:
Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-E70028

    Endogenous Metabolite Metabolic Disease
    UDP-sugar pyrophosphorylase (BlUSP) is the enzyme capable of activating glucose-1-phosphate (Glc-1-P) to UDP-glucose (UDP-Glc). UDP-sugar pyrophosphorylase (BlUSP) catalyzes a reversible transfer of the uridyl group from UTP to sugar-1-phosphate, producing UDP-sugar and pyrophosphate (PPi) .
    UDP-sugar pyrophosphorylase (BlUSP)
  • HY-E70066

    Others Others
    UDP-sugar pyrophosphorylase (AtUSP) is a broad substrate enzyme that synthesizes nucleotide sugars. UDP-sugar pyrophosphorylase catalyzes the conversion of various monosaccharide 1-phosphates to the respective UDP-sugars in the salvage pathway .
    UDP-sugar pyrophosphorylase (AtUSP)
  • HY-114365

    UDP-N-acetyl-D-galactosamine disodium

    Endogenous Metabolite Metabolic Disease Cancer
    UDP-GalNAc (UDP-N-acetyl-D-galactosamine) disodium is a sugar nucleotide and a substrate for EpsC115. EpsC115 is a mutant with N-terminal residues 1-115 deleted from the exopolymeric substance (EPS). UDP-GalNAc disodium is a donor substrate for many N-acetylgalactosaminyltransferases, which transfer GalNAc from nucleotide sugars to sugar or peptide acceptors. UDP-GalNAc disodium provides a sugar group donor for glycosylation reactions. UDP-GalNAc disodium can be used in cancer research, such as colorectal and breast cancer .
    UDP-GalNAc disodium
  • HY-E70020

    Others Others
    UDP-Glc dehydrogenase (UGDH) catalyzes is a NAD+-dependent enzyme that catalyzes the two-fold oxidation of UDP-glucose (UDP-Glc) to produce UDP-glucuronic acid. UDP-Glc dehydrogenase (UGDH) is a key enzyme in the nucleotide-sugar interconversion pathway necessary for biosynthesis of many cell-wall polysaccharides .
    UDP-Glc dehydrogenase (UGDH)
  • HY-N10573
    UDP-rhamnose
    1 Publications Verification

    Endogenous Metabolite Others
    UDP-rhamnose is one of the substrates for pectin synthesis in cell wall. UDP-rhamnose can be identified in fungi. UDP-rhamnose is one of the most common sugar donors in plants. UDP-rhamnose synthesis requires recombinant enzymes. UDP-rhamnose can be synthesized from UDP-glucose through the consecutive three-step reaction catalyzed by a single structure enzyme in plants .
    UDP-rhamnose
  • HY-N11287A
    UDP-xylose disodium
    1 Publications Verification

    Endogenous Metabolite Others
    UDP-xylose disodium is an endogenous sugar nucleotide and a catalytic substrate of UDP-xylose disodium synthase (UXS). UDP-xylose disodium 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 disodium 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].
    UDP-xylose disodium
  • HY-125954

    UDP-α-D-glucuronic acid

    Endogenous Metabolite Metabolic Disease
    Uridine diphosphate glucuronic acid (UDP-α-D-glucuronic acid) is a cofactor that is formed by the catalytic activity of UDP-glucose dehydrogenase. Uridine diphosphate glucuronic acid is a central precursor in sugar nucleotide biosynthesis and common substrate for C4-epimerases and decarboxylases releasing UDP-galacturonic acid (UDP-GalA) and UDP-pentose products, respectively. Uridine diphosphate glucuronic acid as a glucuronic acid donor, can be used for for the research of the conjugation of bilirubin in the endoplasmic recticulum .
    Uridine diphosphate glucuronic acid
  • HY-N11287

    Endogenous Metabolite Others
    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].
    UDP-xylose
  • HY-125954A

    UDP-α-D-glucuronic acid ammonium

    Endogenous Metabolite Metabolic Disease
    Uridine diphosphate glucuronic acid (UDP-GlcA) ammonium is a cofactor that is formed by the catalytic activity of UDP-glucose dehydrogenase. Uridine diphosphate glucuronic acid (ammonium) is a central precursor in sugar nucleotide biosynthesis and common substrate for C4-epimerases and decarboxylases releasing UDP-galacturonic acid (UDP-GalA) and UDP-pentose products, respectively. Uridine diphosphate glucuronic acid (ammonium), as a glucuronic acid donor, can be used for for the research of the conjugation of bilirubin in the endoplasmic recticulum .
    Uridine diphosphate glucuronic acid ammonium
  • HY-150524

    Endogenous Metabolite P2Y Receptor Metabolic Disease
    UDP-Galactose is a monosaccharide involved in nucleotide sugar metabolism. UDP-Galactose and its derivatives act as a natural agonist for Gi protein-conjugated P2Y14 receptors in the immune system (IC50=0.67 μM, hP2Y14) .
    UDP-Galactose
  • HY-145934B

    OGT Biochemical Assay Reagents Glycosidase Metabolic Disease
    UDP-GlcNAz disodium (UDP-N-azidoacetylgalactosamine disodium) is the analogue of UDP-GlcNAc (HY-112174). UDP-GlcNAc is the donor substrate of many N-acetylgalactosaminyltransferases, enzymes which transfer GlcNAc from the nucleotide sugar to a saccharide or peptide acceptor. UDP-GlcNAc (disodium) is a click chemistry reagent, it contains an Azide group and can undergo copper-catalyzed azide-alkyne cycloaddition reaction (CuAAc) with molecules containing Alkyne groups. It can also undergo strain-promoted alkyne-azide cycloaddition (SPAAC) reactions with molecules containing DBCO or BCN groups .
    UDP-GlcNAz
  • HY-145934A

    OGT Biochemical Assay Reagents Glycosidase Metabolic Disease
    UDP-GlcNAz disodium (UDP-N-azidoacetylgalactosamine disodium) is the analogue of UDP-GlcNAc (HY-112174). UDP-GlcNAc is the donor substrate of many N-acetylgalactosaminyltransferases, enzymes which transfer GlcNAc from the nucleotide sugar to a saccharide or peptide acceptor . UDP-GlcNAc (disodium) is a click chemistry reagent, it contains an Azide group and can undergo copper-catalyzed azide-alkyne cycloaddition reaction (CuAAc) with molecules containing Alkyne groups. It can also undergo strain-promoted alkyne-azide cycloaddition (SPAAC) reactions with molecules containing DBCO or BCN groups.
    UDP-GlcNAz disodium
  • HY-145934

    UDP-N-azidoacetylgalactosamine disodium

    Biochemical Assay Reagents OGT Glycosidase Metabolic Disease
    UDP-GalNAz (UDP-N-azidoacetylgalactosamine) disodium is the analogue of UDP-GalNAc (HY-114365). UDP-GalNAc is the donor substrate of many N-acetylgalactosaminyltransferases, enzymes which transfer GalNAc from the nucleotide sugar to a saccharide or peptide acceptor . UDP-GalNAz (disodium) is a click chemistry reagent, it contains an Azide group and can undergo copper-catalyzed azide-alkyne cycloaddition reaction (CuAAc) with molecules containing Alkyne groups. It can also undergo strain-promoted alkyne-azide cycloaddition (SPAAC) reactions with molecules containing DBCO or BCN groups.
    UDP-GalNAz disodium
  • HY-125954S

    UDP-α-D-glucuronic acid-13C,15N2

    Isotope-Labeled Compounds Endogenous Metabolite Metabolic Disease
    Uridine diphosphate glucuronic acid- 13C, 15N2 (UDP-α-D-glucuronic acid- 13C, 15N2) is the 13C- and 15N-labeled Uridine diphosphate glucuronic acid (HY-125954). Uridine diphosphate glucuronic acid (UDP-α-D-glucuronic acid) is a cofactor that is formed by the catalytic activity of UDP-glucose dehydrogenase. Uridine diphosphate glucuronic acid is a central precursor in sugar nucleotide biosynthesis and common substrate for C4-epimerases and decarboxylases releasing UDP-galacturonic acid (UDP-GalA) and UDP-pentose products, respectively. Uridine diphosphate glucuronic acid as a glucuronic acid donor, can be used for for the research of the conjugation of bilirubin in the endoplasmic recticulum .
    Uridine diphosphate glucuronic acid-13C,15N2
  • HY-156905

    Biochemical Assay Reagents Cancer
    6-Azido-N-acetylgalactosamine-UDP (compound 5) is an active sugar donor in the beta-1, 3-N-Acetylhexaminyltransferase (LgtA)-catalyzed glycosylation of lactose .
    6-Azido-N-acetylgalactosamine-UDP
  • HY-116295A

    P2Y Receptor p38 MAPK Calcium Channel Cardiovascular Disease
    MRS2690 disodium is a selective P2Y14 receptor agonist. MRS2690 disodium inhibits adenylyl cyclase activity, thereby reducing intracellular cAMP levels and mediating concentration-dependent vasoconstriction of porcine coronary arteries. MRS2690 disodium induces intracellular calcium mobilization, activates P38 and stimulates [ 35S]GTPγS binding to RBL-2H3 cell membranes. MRS2690 enhances antigen (NP-BSA)-, C3a-induced β-hexosaminidase (β-Hex) release. MRS2690 disodium can be used for ischemic heart disease .
    MRS2690 disodium
  • HY-116295

    P2Y Receptor p38 MAPK Calcium Channel Cardiovascular Disease
    MRS2690 is a selective P2Y14 receptor agonist. MRS2690 inhibits adenylyl cyclase activity, thereby reducing intracellular cAMP levels and mediating concentration-dependent vasoconstriction of porcine coronary arteries. MRS2690 induces intracellular calcium mobilization, activates P38 and stimulates [ 35S]GTPγS binding to RBL-2H3 cell membranes. MRS2690 enhances antigen (NP-BSA)-, C3a-induced β-hexosaminidase (β-Hex) release. MRS2690can be used for ischemic heart disease .
    MRS2690
  • HY-112942

    CMP-Neu5Ac

    Endogenous Metabolite Metabolic Disease
    CMP-Sialic acid (CMP-Neu5Ac) is an allosteric inhibitor of UDP-GlcNAc 2-epimerase. CMP-Sialic acid provides a substrate for Golgi sialyltransferases. CMP-Sialic acid is an important sugar nucleotide for biosynthesis of sialic acid and its conjugates .
    CMP-Sialic acid
  • HY-112942A
    CMP-Sialic acid sodium salt
    2 Publications Verification

    CMP-Neu5Ac sodium salt

    Endogenous Metabolite Metabolic Disease
    CMP-Sialic acid (CMP-Neu5Ac) sodium salt is an allosteric inhibitor of UDP-GlcNAc 2-epimerase. CMP-Sialic acid sodium salt provides a substrate for Golgi sialyltransferases. CMP-Sialic acid sodium salt is an important sugar nucleotide for biosynthesis of sialic acid and its conjugates .
    CMP-Sialic acid sodium salt
  • HY-E70138

    EC:2.4.1.133; B4GALT7

    Glycosyltransferase Others
    β-1,4-Galactosyltransferase 7 has exclusive specificity for the donor substrate UDP-galactose and all transfer galactose in a β-1,4 linkage to similar acceptor sugars: GlcNAc, Glc, and Xyl. .
    β-1,4-Galactosyltransferase 7
  • HY-113143A

    Endogenous Metabolite Metabolic Disease
    Galactose 1-phosphate Potassium salt is an intermediate in the galactose metabolism and nucleotide sugars. Galactose 1-phosphate Potassium salt is an inhibitor of a series of enzymatic activities such as phosphoglucomutase, glucose-6-phos phate phosphatase, glucose-6-phosphate dehydrogenase, glycogen phosphorylase, UDP-glucose pyrophosphorylase and inositol monophosphatase .
    Galactose 1-phosphate Potassium salt
  • HY-E70030

    Bacterial Infection
    GlcNAc 1-P uridyltransferase (CjGlmU) is a sugar nucleotidyltransferase (SNT). GlcNAc 1-P uridyltransferase (CjGlmU) utilizes UTP and GlcNAc-1-P as its natural substrates, synthesizes UDP-GlcNAc. GlcNAc 1-P uridyltransferase (CjGlmU) has the potential for the research of antimicrobial agents .
    GlcNAc 1-P uridyltransferase (CjGlmU)

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