55 Results for "

acceptor substrate

" in MedChemExpress (MCE) Product Catalog:
Products (55)

55 Results for "acceptor substrate" in MCE Product Catalog:

Cat. No.: HY-P2756A
Research Areas:  

Metabolic Disease

Alcohol oxidase, Hansenula sp. (EC 1.1.3.13) is a redox enzyme that acts on the CH-OH group in donor molecules and uses oxygen as an acceptor. The two substrates of Alcohol Oxidase, Hansenula sp. (EC 1.1.3.13) are primary alcohols and O2, while its two products are aldehydes and H2O2.
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Cat. No.: HY-P2756B
Research Areas:  

Metabolic Disease

Alcohol Oxidase, Pichia pastoris (EC 1.1.3.13) is a redox enzyme that acts on the CH-OH group in donor molecules and uses oxygen as an acceptor. The two substrates of Alcohol Oxidase, Pichia pastoris (EC 1.1.3.13) are primary alcohols and O2, while its two products are aldehydes and H2O2.
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Cat. No.: HY-P3186B
Target:  

Endogenous Metabolite

Research Areas:  

Metabolic Disease

Glucose dehydrogenase, Pseudomonas sp. (EC 1.1.1.47) is an oxidoreductase that acts on the CH-OH group of a donor molecule and uses NAD + or NADP + as an acceptor. The three substrates of glucose dehydrogenase are β-D-glucose, NAD +, and NADP +, while its four products are D-gluconic acid-1,5-lactone, NADH, NADPH, and H +.
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Cat. No.: HY-W006081
CAS No.: 4920-77-8
Target:  

UGT

Research Areas:  

Others

3-Methyl-2-nitrophenol is a UDP-glucuronyltransferase (EC 2.4.1.17) acceptor substrate that can be confirmed to undergo glucuronidation catalyzed by the enzyme to form a glucuronide conjugate. 3-Methyl-2-nitrophenol functions as a substrate for conjugation, with glucuronidation forming a glucuronide conjugate that eliminates the parent compound’s characteristic yellow color. 3-Methyl-2-nitrophenol has higher lipid solubility that contributes to high glucuronidation conversion rate, and exhibits lower absorbance at 340 nm to act as a less interfering substrate for the NADH-NAD +-linked UDP-glucuronyltransferase assay .
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Cat. No.: HY-E70922
Target:  

Endogenous Metabolite

Research Areas:  

Metabolic Disease

Yeast 6-Phosphogluconic Dehydrogenase (EC 1.1.1.44) belongs to the oxidoreductase family. It is an oxidoreductase that acts on the CH-OH group of the donor molecule and uses NAD+ or NADP+ as the acceptor. Yeast 6-Phosphogluconic Dehydrogenase has two substrates: 6-phosphate-D-gluconic acid and NADP+, and three products: D-ribulose-5-phosphate, CO2, and NADPH.
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Cat. No.: HY-P2888D
Research Areas:  

Metabolic Disease

Bilirubin Oxidase, Myrothecium verrucaria (EC 1.3.3.5) is a family of oxidoreductases that act on the CH-CH group as a donor and use oxygen as an acceptor. Bilirubin Oxidase, Myrothecium verrucaria (EC 1.3.3.5) is involved in the metabolism of porphyrins and chlorophyll. The two substrates of Bilirubin Oxidase, Myrothecium verrucaria (EC 1.3.3.5) are bilirubin and O2, while its two products are biliverdin and H2O.
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Cat. No.: HY-W1139983A
CAS No.: 17479-06-0
Target:  

Glycosyltransferase

Research Areas:  

Others

UDP-Galactosamine is a sugar nucleotide donor and enzyme substrate, exhibiting activity toward Galactosyltransferase, UDP-galactose 4'-epimerase, and hexose-1-phosphate uridylyltransferase. UDP-Galactosamine supports the transfer of galactosamine residues to acceptor molecules and participates in the biosynthesis of UDP-galactose. UDP-Galactosamine enables a two-step chemoenzymatic preparative-scale synthesis of GalNAc-glycosides and derivatives with unnatural glycosidic linkages .
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Cat. No.: HY-E70385A
Target:  

Endogenous Metabolite

Research Areas:  

Metabolic Disease

Oxalate oxidase, B. subtilis (EC 1.2.3.4) is a redox enzyme that acts on the donor aldehyde or carbonyl group, using oxygen as the acceptor. Oxalate oxidase, B is involved in the metabolism of glyoxylate and dicarboxylic acids. Oxalate oxidase, B has two cofactors: FAD and manganese. Oxalate oxidase, B has three substrates: oxalic acid, O2, and H +, and two products: CO2 and H2O2.
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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-E70926
Target:  

Endogenous Metabolite

Research Areas:  

Metabolic Disease

Lysine Oxidase, Trichoderma viride (EC 1.4.3.14), is an oxidoreductase that acts on the CH-NHsub>2 group in the donor molecule and uses oxygen as the acceptor. Lysine Oxidase participates in the degradation of lysine. The three substrates of lysine oxidase are L-lysine, O2, and H2O, while its three products are 6-amino-2-oxohexanoic acid, NH3, and H2O2.
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Cat. No.: HY-E70945
Target:  

Endogenous Metabolite

Research Areas:  

Metabolic Disease

6-Phosphogluconic Dehydrogenase, Sheep (EC 1.1.1.44) belongs to the oxidoreductase family. Its two substrates are 6-phosphate-D-gluconic acid and NADP+, and its three products are D-ribulose-5-phosphate, CO2, and NADPH. 6-Phosphogluconic Dehydrogenase, Sheep (EC 1.1.1.44) refers to an oxidoreductase that acts on the CH-OH group of the donor molecule and uses NAD+ or NADP+ as the acceptor.
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Cat. No.: HY-P2901A
Target:  

3α-HSD

Research Areas:  

Endocrinology

3α-Hydroxysteroid Dehydrogenase, Pseudomonas testosteroni (EC 1.1.1.50) belongs to the oxidoreductase family. Its three substrates are androstenedione, NAD+, and NADP+, while its four products are 5α-androstane-3,17-dione, NADH, NADPH, and H+. 3α-Hydroxysteroid Dehydrogenase, Pseudomonas testosteroni, acts on the CH-OH group of the donor molecule, with NAD+ or NADP+ as the acceptor.
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Cat. No.: HY-E70977
Research Areas:  

Metabolic Disease

6-phospho-D-gluconate dehydrogenase, E. coli (EC 1.1.1.44) is an oxidoreductase that acts on the CH-OH group of a donor molecule and uses NAD+ or NADP+ as an acceptor. The two substrates of 6-phospho-D-gluconate dehydrogenase, E. coli (EC 1.1.1.44) are 6-phospho-D-gluconate and NADP+, while its three products are D-ribulose-5-phosphate, CO2, and NADPH.
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Cat. No.: HY-E71753
Research Areas:  

Others

3-Hydroxypropionyl-CoA synthase (EC 6.2.1.36) catalyses a step in the 3-hydroxypropanoate/4-hydroxybutanoate cycle, an autotrophic CO2 fixation pathway found in some thermoacidophilic archaea.The enzymes from Metallosphaera sedula and Sulfolobus tokodaii can also use propionate, acrylate, acetate, and butanoate as substrates, and are thus different from EC 6.2.1.17 (propionate-CoA ligase), which does not accept acetate or butanoate.
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Cat. No.: HY-W392912A
CAS No.: 2833-24-1
Synonyms: Methyl (2E)-4-oxopent-2-enoate
Research Areas:  

Others

Methyl trans-4-oxo-2-pentenoate (Methyl (2E)-4-oxopent-2-enoate) is a heterofunctionalized dienophile containing both ketone and ester functional groups. The enone structure within the Methyl trans-4-oxo-2-pentenoate molecule makes it a highly reactive Michael acceptor capable of regioselective conjugate addition, which is commonly used in reactions for constructing complex ring systems such as the Robinson annulation. Methyl trans-4-oxo-2-pentenoate can serve as a substrate in the synthesis of α-(alkylmethylene) butyrolactone derivatives. Methyl trans-4-oxo-2-pentenoate participates in asymmetric Diels-Alder reactions promoted by chiral palladium complexes .
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