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Catalog Number:
32751
CAS Number:
1926163-45-2
Z-Asp-Gln-Met-Asp-AFC
Synonym(s):
["["Bis(1, 1-diméthyléthyl)azodicarboxylate, [DBAD »]
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$245.47 /5 mg
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Product Information

Z-Asp-Gln-Met-Asp-AFC is a sophisticated peptide compound that plays a crucial role in biochemical research and applications. This compound, characterized by its unique structure, is particularly valuable in the field of proteomics and drug discovery. Its design allows for specific interactions with biological targets, making it an excellent candidate for studying enzyme activity and protein interactions. Researchers utilize Z-Asp-Gln-Met-Asp-AFC in assays to monitor proteolytic activity, which is essential for understanding various physiological processes and disease mechanisms.

The compound's stability and specificity enhance its utility in high-throughput screening applications, providing reliable data for drug development. Additionally, its ability to function as a fluorescent probe allows for real-time monitoring of biological reactions, offering insights into cellular processes. With its diverse applications in both academic and industrial settings, Z-Asp-Gln-Met-Asp-AFC stands out as a vital tool for researchers aiming to advance their work in biochemistry and molecular biology.

Synonyms
["["Bis(1, 1-diméthyléthyl)azodicarboxylate, [DBAD »]
CAS Number
1926163-45-2
Molecular Formula
C 36 H 39 F 3 N 6 O 13 S
Molecular Weight
852.8
MDL Number
MFCD08458675
Conditions
Conserver à ≤ -10 °C
General Information
Synonyms
["["Bis(1, 1-diméthyléthyl)azodicarboxylate, [DBAD »]
CAS Number
1926163-45-2
Molecular Formula
C 36 H 39 F 3 N 6 O 13 S
Molecular Weight
852.8
MDL Number
MFCD08458675
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

Z-Asp-Gln-Met-Asp-AFC is widely utilized in research focused on:

  • Biochemical Assays: This compound serves as a substrate in enzyme activity assays, allowing researchers to measure the activity of specific proteases. Its design enables sensitive detection, making it ideal for studying enzyme kinetics.
  • Drug Development: In pharmaceutical research, it can be used to evaluate the efficacy of drug candidates targeting proteolytic enzymes. This application is crucial for developing treatments for diseases where protease activity is altered.
  • Cell Biology: The compound is used in cell culture studies to investigate cellular responses to protease activity. This can help in understanding cellular signaling pathways and their implications in various diseases.
  • Diagnostics: It has potential applications in diagnostic assays for diseases characterized by abnormal protease levels, providing a valuable tool for early detection and monitoring of conditions such as cancer.
  • Research on Protein Interactions: The compound can be utilized to study protein-protein interactions, offering insights into the molecular mechanisms of various biological processes and aiding in the discovery of new therapeutic targets.

Citations