Date published: 2026-5-3

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Adenylate Kinase Inhibitors

Santa Cruz Biotechnology now offers a broad range of Adenylate Kinase Inhibitors for use in various applications. Adenylate Kinase Inhibitors are a vital class of compounds in scientific research, playing a key role in the study of cellular energy homeostasis and nucleotide metabolism. Adenylate kinase is an enzyme that catalyzes the interconversion of adenine nucleotides, which is crucial for maintaining the balance of ATP, ADP, and AMP within the cell. By inhibiting this enzyme, researchers can explore the intricate mechanisms of energy regulation and nucleotide signaling that are fundamental to cellular function. These inhibitors are particularly valuable for investigating how disruptions in energy balance affect cellular processes such as metabolism, signal transduction, and stress responses. In the scientific community, Adenylate Kinase Inhibitors are utilized in a variety of experimental contexts, including studies focused on metabolic pathways, enzyme kinetics, and the regulation of cellular energetics. Their use provides insights into the role of adenylate kinase in different biological systems and contributes to a deeper understanding of how cells adapt to changing energy demands. Researchers often employ these inhibitors in both in vitro and in vivo models to dissect the impact of adenylate kinase activity on cellular physiology and to identify potential regulatory mechanisms involved in energy management. The availability of high-quality Adenylate Kinase Inhibitors is thus essential for advancing research in cell biology, biochemistry, and molecular biology. View detailed information on our available Adenylate Kinase Inhibitors by clicking on the product name.
Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

P1,P5-Di(adenosine-5′-)pentaphosphate, Trilithium Salt

75522-97-3sc-204156
sc-204156A
sc-204156B
sc-204156C
25 mg
100 mg
250 mg
1 g
$264.00
$556.00
$917.00
$2295.00
1
(0)

P1,P5-Di(adenosine-5′-)pentaphosphate, Trilithium Salt acts as an adenylate kinase, showcasing remarkable stability and solubility due to its trilithium salt form. This compound facilitates the transfer of phosphate groups through unique electrostatic interactions, enhancing reaction rates. Its multi-phosphate structure allows for efficient substrate binding and promotes allosteric regulation, influencing energy transfer pathways and cellular signaling mechanisms in a distinctive manner.