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Catalog Number:
32699
CAS Number:
65147-21-9
Sel d'acétate de H-Pro-Phe-Arg-AMC
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$168.35 /25 mg
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Product Information

H-Pro-Phe-Arg-AMC acetate salt is a specialized peptide compound that plays a significant role in biochemical research and pharmaceutical applications. This compound is particularly valued for its use in protease assays, where it serves as a substrate for various enzymes, enabling researchers to study enzyme kinetics and activity. Its unique structure, featuring a phenylalanine and arginine residue, enhances its specificity and effectiveness in targeting proteolytic enzymes, making it an essential tool in drug discovery and development.

In addition to its applications in enzymatic studies, H-Pro-Phe-Arg-AMC acetate salt is also utilized in the synthesis of peptide-based therapeutics, where its properties can be harnessed to design more effective drugs. Researchers appreciate its stability and solubility, which facilitate its incorporation into various experimental setups. This compound stands out for its ability to provide reliable and reproducible results, making it a preferred choice for professionals in biochemistry and molecular biology.

CAS Number
65147-21-9
Molecular Formula
C30H37N7O5 · C2H4O2
Molecular Weight
635.72
MDL Number
MFCD06795778
PubChem ID
174085
Conditions
Conserver à ≤ -10 °C
General Information
CAS Number
65147-21-9
Molecular Formula
C30H37N7O5 · C2H4O2
Molecular Weight
635.72
MDL Number
MFCD06795778
PubChem ID
174085
Conditions
Conserver à ≤ -10 °C
Properties
Additional property information coming soon!
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Safety and Regulations
Hazmat
Non
Antibiotic
Non
DEA-regulated
Non
Warnings
-
Applications

H-Pro-Phe-Arg-AMC acetate salt is widely utilized in research focused on:

  • Biochemical Assays: This compound is commonly used in enzyme activity assays, particularly for proteases. Its structure allows for the release of a fluorescent signal upon cleavage, making it easier to monitor enzyme activity in real-time.
  • Drug Development: In pharmaceutical research, it serves as a valuable tool for screening potential drug candidates that target specific proteolytic pathways, aiding in the identification of new therapeutic agents.
  • Cellular Studies: Researchers employ this compound in cell culture experiments to study cellular processes such as apoptosis and protein degradation, providing insights into disease mechanisms.
  • Diagnostic Applications: It has potential applications in developing diagnostic tests for diseases that involve protease activity, offering a way to measure disease progression or treatment efficacy.
  • Research on Protein Interactions: The compound is useful in studying protein-protein interactions, helping scientists understand complex biological pathways and develop targeted interventions.

Citations