Date published: 2025-12-5

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Enzyme Substrates

Santa Cruz Biotechnology now offers a broad range of enzyme substrates for use in various applications. Enzyme substrates are essential molecules that interact with enzymes to undergo specific biochemical transformations, serving as critical tools in scientific research to study enzyme activity, kinetics, and specificity. These substrates are pivotal for understanding the catalytic mechanisms of enzymes and their roles in metabolic pathways. Researchers utilize enzyme substrates to investigate how enzymes facilitate biochemical reactions, to measure enzyme activity in various contexts, and to explore the regulatory mechanisms that control enzyme function. Enzyme substrates are also indispensable in the development and optimization of assays for detecting and quantifying enzyme activity, which is fundamental in fields such as biochemistry, molecular biology, and biotechnology. By providing high-quality enzyme substrates, researchers can perform detailed kinetic analyses, screen for enzyme inhibitors or activators, and understand the effects of genetic modifications on enzyme function. These substrates are also used in industrial applications to monitor and enhance enzyme-catalyzed processes, improving efficiency and productivity in the synthesis of valuable products. By offering a comprehensive selection of enzyme substrates, Santa Cruz Biotechnology supports cutting-edge research and innovation, enabling scientists to achieve precise and reproducible results in their studies. View detailed information on our available enzyme substrates by clicking on the product name.

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Items 391 to 400 of 433 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

4-Nitrophenyl beta-L-fucopyranoside

22153-71-5sc-277582
500 mg
$200.00
(0)

4-Nitrophenyl beta-L-fucopyranoside serves as a substrate for specific glycosidases, showcasing unique interactions that enhance enzymatic hydrolysis. Its aromatic nitro group contributes to distinct electronic properties, influencing reaction kinetics and substrate specificity. The compound's ability to undergo selective cleavage by enzymes highlights its role in carbohydrate metabolism. Additionally, its solubility in various solvents facilitates diverse experimental conditions, promoting effective enzyme-substrate interactions.

Peptone water

sc-360256
500 ml
$130.00
(0)

Peptone water is a nutrient-rich medium that supports microbial growth by providing a complex mixture of peptides and amino acids. Its unique composition fosters specific enzyme activities, enhancing metabolic pathways in microorganisms. The presence of various nitrogen sources promotes diverse enzymatic reactions, influencing growth kinetics. Additionally, its osmotic properties create an optimal environment for microbial enzyme interactions, facilitating efficient nutrient uptake and metabolic processes.

4-Methylumbelliferyl 2,3,4,6-tetra-O-acetyl-α-D-mannopyranoside

28541-71-1sc-284353
sc-284353A
50 mg
100 mg
$170.00
$320.00
(0)

4-Methylumbelliferyl 2,3,4,6-tetra-O-acetyl-α-D-mannopyranoside serves as a substrate for specific glycosidases, showcasing unique molecular interactions that facilitate enzymatic hydrolysis. Its acetylated structure enhances solubility and stability, allowing for precise kinetic studies of enzyme activity. The compound's fluorescence upon cleavage provides a sensitive detection method, enabling real-time monitoring of enzymatic reactions and elucidating metabolic pathways in various biological systems.

1-Amino-2,5-anhydro-1-deoxy-D-mannitol

228862-97-3sc-220459
10 mg
$320.00
(0)

1-Amino-2,5-anhydro-1-deoxy-D-mannitol acts as a competitive inhibitor in enzymatic reactions, particularly influencing glycosyltransferase activity. Its unique structural conformation allows for specific binding interactions with enzyme active sites, altering reaction kinetics. The compound's ability to mimic substrate characteristics enhances its role in studying enzyme mechanisms, providing insights into carbohydrate metabolism and the regulation of glycan biosynthesis.

L-Histidine 7-amido-4-methylcoumarin

191723-64-5sc-281543
sc-281543A
10 mg
25 mg
$164.00
$310.00
(0)

L-Histidine 7-amido-4-methylcoumarin acts as a substrate for various proteolytic enzymes, enabling the cleavage of peptide bonds. Its distinctive coumarin moiety exhibits fluorescence, allowing for sensitive detection of enzymatic activity. The compound's structural conformation facilitates specific binding interactions with enzyme active sites, influencing catalytic efficiency and reaction dynamics. This behavior aids in elucidating proteolytic pathways and enzyme specificity.

4-Methylumbelliferyl-alpha-L-rhamnopyranoside

106488-05-5sc-206918
100 mg
$516.00
(0)

4-Methylumbelliferyl-alpha-L-rhamnopyranoside serves as a substrate for specific glycosidases, facilitating the hydrolysis of glycosidic bonds. Its fluorescent properties enable real-time monitoring of enzymatic activity, making it a valuable tool for studying enzyme kinetics. The compound's structural features promote selective interactions with enzyme active sites, influencing reaction rates and providing insights into carbohydrate processing pathways. Its unique behavior enhances understanding of rhamnose metabolism.

L-Arginine β-naphthylamide hydrochloride

18905-73-2sc-207793
sc-207793A
1 g
5 g
$219.00
$663.00
(0)

L-Arginine β-naphthylamide hydrochloride serves as a potent inhibitor of certain enzymes, particularly those involved in arginine metabolism. Its unique β-naphthylamide group enhances hydrophobic interactions, promoting selective binding to enzyme active sites. This compound can modulate reaction kinetics by altering substrate availability and influencing enzyme conformational states. Its distinct molecular interactions provide insights into enzymatic regulation and metabolic pathways, making it a valuable tool for biochemical studies.

Laminarin

9008-22-4sc-255251
sc-255251A
100 mg
500 mg
$45.00
$74.00
2
(1)

Laminarin is a polysaccharide that acts as a substrate for specific enzymes, particularly those involved in carbohydrate metabolism. Its unique β-glucan structure facilitates interactions with enzyme active sites, promoting hydrolysis through distinct catalytic pathways. The presence of multiple hydroxyl groups enhances solubility and reactivity, influencing reaction kinetics. Laminarin's molecular configuration allows for diverse enzymatic interactions, providing insights into glycan metabolism and cellular signaling processes.

Adenosine 3′-Phosphate 5′-Phosphosulfate, Tetralithium Salt

102029-54-9sc-495621
10 mg
$720.00
(0)

Adenosine 3'-Phosphate 5'-Phosphosulfate, Tetralithium Salt serves as a crucial cofactor in enzymatic reactions, particularly in sulfate transfer processes. Its unique phosphate and sulfate groups enable specific binding to enzyme active sites, facilitating the transfer of sulfate moieties. This compound exhibits distinct reaction kinetics, influenced by its ionic nature, which enhances solubility and reactivity in aqueous environments. Its structural features allow for versatile interactions, playing a key role in metabolic pathways involving sulfation.

Benzyl 2-acetamido-2-deoxy-3-O-β-D-galactopyranosyl-α-D-galactopyranoside

3554-96-9sc-217732
sc-217732A
5 mg
10 mg
$207.00
$387.00
(0)

Benzyl 2-acetamido-2-deoxy-3-O-β-D-galactopyranosyl-α-D-galactopyranoside acts as a substrate in glycosylation reactions, showcasing unique molecular interactions that enhance enzyme specificity. Its intricate sugar moieties facilitate hydrogen bonding and hydrophobic interactions, influencing enzyme-substrate affinity. The compound's stereochemistry plays a pivotal role in determining reaction pathways, while its conformational flexibility allows for efficient enzyme catalysis, impacting various biochemical processes.