Phosphoenolpyruvic acid monocyclohexylammonium salt for energy metabolism research, CAS 10526-80-4
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Phosphoenolpyruvic acid monocyclohexylammonium salt for energy metabolism research, CAS 10526-80-4

Cat.No: CMTR-HMM-0083 Datasheet

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Product Name Phosphoenolpyruvic acid monocyclohexylammonium salt for energy metabolism research, CAS 10526-80-4
Catalog No. CMTR-HMM-0083
Description Phosphoenolpyruvic acid monocyclohexylammonium salt (CAS 10526-80-4) is a high-performance biochemical reagent with the molecular formula C6H13N·C3H5O6P and a molecular weight of 267.22. It has a melting point of 140 °C and a density of 1.36 g/cm³. As a phosphorylated intermediate of central metabolism, this compound is widely used in biochemistry and cell biology research, particularly in studies of cellular energy conversion. It serves as a valuable tool for investigating glycolytic pathways and for probing intracellular signal transduction processes.
Intended Use For research use in biochemistry and cell biology, including studies of energy metabolism and cellular energy conversion, investigation of the glycolytic pathway, and research on intracellular signal transduction.
Package Specifications 1 kg/bottle; 25 kg/drum
Key Features High reactivity in enzyme-catalyzed reactions: the phosphate group is readily transferred to acceptor molecules under low-pH conditions.
Excellent stability in intracellular-like environments: the cyclohexylammonium moiety remains stable at elevated pH, ensuring reliable performance in cellular systems.
Purity >99%, supporting consistent and reproducible experimental results.
Purity >99%
Molecular Weight 267.22
Application Notes / Precautions Recommended for glycolysis and energy metabolism studies where a high-energy phosphate donor is required.
Suitable for signal transduction research involving phosphoryl transfer reactions.
Handle according to standard laboratory chemical safety practices.
Molecular Formula C6H13N·C3H5O6P
CAS Number 10526-80-4
Other Name Phosphoenolpyruvic acid cyclohexylammonium salt
Density 1.36 g/cm³
Melting Point 140 °C

For research use only, not for clinical use.

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