16 Results for "

galactose metabolism

" in MedChemExpress (MCE) Product Catalog:
Products (16)

16 Results for "galactose metabolism" in MCE Product Catalog:

5
5 Cited Publications
Cat. No.: HY-114364
CAS No.: 137868-52-1
Purity:  99.42%
UDP-Galactose disodium is a monosaccharide and a key glycosyl donor molecule in cells that participates in nucleotide sugar metabolism. UDP-Galactose disodium is the natural agonist of the P2Y14 receptor coupled to Gi proteins in the immune system (IC50 = 0.67 μM, hP2Y14). UDP-Galactose disodium can be used to study cell signal transduction and substance metabolism .
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Cat. No.: HY-P2869A
CAS No.: 9031-11-2
Target:  

Glycosidase

Research Areas:  

Metabolic Disease

β1-3 Galactosidase is a GH42 exoglycosidase that specifically hydrolyzes terminal β1-3-linked galactose. β1-3 Galactosidase uses Glu164 as the acid/base catalyst and Glu324 as the catalytic nucleophile to hydrolyze β1-3 galactosidic linkages. β1-3 Galactosidase can be used for research on galactoside metabolism .
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Cat. No.: HY-150524
CAS No.: 2956-16-3
UDP-Galactose is a monosaccharide and a key glycosyl donor molecule in cells that participates in nucleotide sugar metabolism. UDP-Galactose is the natural agonist of the P2Y14 receptor coupled to Gi proteins in the immune system (IC50 = 0.67 μM, hP2Y14). UDP-Galactose can be used to study cell signal transduction and substance metabolism .
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Cat. No.: HY-W150340
CAS No.: 5965-66-2
Research Areas:  

Cancer

β-Lactose is a disaccharide commonly found in milk and dairy products. It consists of two monosaccharides, glucose and galactose, linked by β-glycosidic bonds. β-Lactose has various applications in the food industry, especially as a sweetener and bulking agent. Furthermore, it can be used as a substrate for enzymes involved in lactose metabolism and as a model compound for studying carbohydrate-protein interactions.
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Cat. No.: HY-144312
CAS No.: 1989627-40-8
Purity:  99.76%
Target:  

Galectin

Research Areas:  

Metabolic Disease Cancer

Thiobis-β-Galactose-propyne is an effective multivalent galectin-3 (Gal-3) inhibitor. Galectin-3 is involved in many metabolism processes related to cancer. Galectin-3-IN-1 is a click chemistry reagent. It contains an alkyne group that can undergo a copper-catalyzed azide-alkyne cycloaddition (CuAAc) reaction with molecules that have an azide group .
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Cat. No.: HY-147062
CAS No.: 18191-20-3
Purity:  98.61%
Research Areas:  

Metabolic Disease

N-acetyl-D-galactosamine 6-phosphate is a galactosamine phosphate that involved in galactose metabolism and phosphotransferase system (PTS). N-Acetyl-D-galactosamine-6-phosphate can be hydrolyze by NagA .
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Cat. No.: HY-W039921
CAS No.: 869186-83-4
Synonyms: N-Azidoacetylgalactosamine; GalNAz
2-[(Azidoacety)amino]-2-deoxy-D-galactose targets O-GlcNAc-modified proteins. By detecting and targeting O-GlcNAc-modified proteins, 2-[(Azidoacety)amino]-2-deoxy-D-galactose can serve as a chemical tag for intracellular sugar chain metabolism .
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Cat. No.: HY-114364S
Purity:  ≥98.0%
UDP-α-D-Galactose- 13C disodium is the 13C labeled UDP-α-D-Galactose disodium. UDP-Galactose disodium is a monosaccharide and a key glycosyl donor molecule in cells that participates in nucleotide sugar metabolism. UDP-Galactose disodium is the natural agonist of the P2Y14 receptor coupled to Gi proteins in the immune system (IC50 = 0.67 μM, hP2Y14). UDP-Galactose disodium can be used to study cell signal transduction and substance metabolism .
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Cat. No.: HY-E70010
CAS No.: 9031-76-9
Synonyms: mutarotases
Aldose 1-epimerase (mutarotases) is a mutarotase and also a key enzyme in carbohydrate metabolism. Aldose 1-epimerase catalyzes the interconversion between α- and β-anomeric isomers of hexoses including glucose and galactose, with a preference for galactose. Aldose 1-epimerase can be used in studies related to galactosemia .
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Cat. No.: HY-W768246
Galactose 1-phosphate- 13C6 potassium is the 13C-labeled Galactose 1-phosphate Potassium salt (HY-113143A). Galactose 1-phosphate Potassium salt is is an intermediate in the galactose metabolism and nucleotide sugars.
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Cat. No.: HY-P2991
CAS No.: 9016-11-9
Target:  

Endogenous Metabolite

Research Areas:  

Others

Galactose-1-phosphate uridyl transferase (GALT) catalyzes the second step of the Leloir pathway of galactose metabolism, namely the conversion of galactose to glucose. Galactose-1-phosphate uridylyltransferase absence results in classic galactosemia in humans and can be used for metabolic disease research .
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Cat. No.: HY-W601362
CAS No.: 102029-88-9
Target:  

Endogenous Metabolite

Research Areas:  

Metabolic Disease

N-Acetyl-D-galactosamine-6-phosphate disodium is a galactosamine phosphate that involved in galactose metabolism and phosphotransferase system (PTS). N-Acetyl-D-galactosamine-6-phosphate disodium can be hydrolyze by NagA .
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Cat. No.: HY-E71393
Research Areas:  

Others

1-Phosphatidylinositol 4-kinase (EC 2.7.1.67) is the first key enzyme involved in the Leloir galactose metabolism pathway (Leloir pathway), responsible for phosphorylating D-galactose into galactose-1-phosphate (Gal-1-P).
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Cat. No.: HY-E71023
Research Areas:  

Metabolic Disease

Uridine-5'-diphosphogalactose 4-epimerase, Galactose-adapted yeast (EC 5.1.3.2) is a homodimeric epimerase found in bacterial, fungal, plant, and mammalian cells. This enzyme performs the final step in the Leloir pathway of galactose metabolism, catalyzing the reversible conversion of UDP-galactose to UDP-glucose.
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Cat. No.: HY-E70891
Target:  

Endogenous Metabolite

Research Areas:  

Metabolic Disease

β-Galactose Dehydrogenase S, Pseudomonas fluorescens (EC 1.1.1.48) belongs to the oxidoreductase family and is an oxidoreductase that acts on the CH-OH group as a donor and uses NAD+ or NADP+ as an acceptor. β-Galactose Dehydrogenase S, Pseudomonas fluorescens, is involved in galactose metabolism. The enzyme's two substrates are D-galactose and NAD+, while its three products are D-galactonide-1,4-lactone, NADH, and H+.
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Cat. No.: HY-L133
446 compounds

Copper is an important co-factor of all biological enzymes, but if the concentration exceeds the threshold of maintaining the homeostasis mechanism, copper will lead to cytotoxicity. This death mechanism has been named "Cuproptosis".

The mechanism of cuproptosis distinct from all other known mechanisms of regulated cell death, including apoptosis, pyroptosis, necroptosis, and ferroptosis.

Copper combine with the lipoylated components of the tricarboxylic acid cycle (TCA), leading to lipoylated protein aggregation and subsequent loss of iron-sulfur cluster proteins, ultimately resulting in protein toxicity stress and cell death. Studies have shown that the necessary factors for cuproptosis include the presence of glutathione, mitochondrial metabolism of galactose and pyruvate, and glutamine metabolism.

Targeted regulation of cuproptosis is a potential choice to treat cancer, rheumatoid arthritis, and other diseases. For example, up-regulation of LIPT1 may inhibit the occurrence and development of tumors by destroying TCA in mitochondria and then inducing cuproptosis.

MCE supplies a unique collection of 446 cuproptosis-related compounds, all of which act on the targets or signaling pathways related to cuproptosis and may have in inhibitory or activated effect on cuproptosis. MCE Cuproptosis Library is a useful tool for drug research related to cancer, rheumatoid arthritis, and other diseases.

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