AMP-PCP disodium

≥95%

  • Product Code: 60660
  CAS:    7414-56-4
Molecular Weight: 549.17 g./mol Molecular Formula: C₁₁H₁₆N₅Na₂O₁₂P₃
EC Number: MDL Number:
Melting Point: Boiling Point:
Density: Storage Condition: -20°C
Product Description: AMP-PCP disodium is widely used in biochemical research as a non-hydrolyzable analog of ATP. It serves as a valuable tool in studying ATP-dependent processes, such as enzyme mechanisms and protein interactions, by mimicking ATP without being metabolized. This compound is particularly useful in crystallography to stabilize protein structures in their ATP-bound states, providing insights into molecular binding sites and conformational changes. Additionally, it is employed in competitive binding assays to investigate the specificity and affinity of ATP-binding proteins, aiding in the development of targeted inhibitors for therapeutic applications. Its stability and resistance to hydrolysis make it a reliable choice for experiments requiring precise control over ATP-like interactions.
Product Specification:
Test Specification
Appearance White Powder
Purity 94.5-100
Infrared Spectrum Conforms to Structure
NMR Conforms to Structure
Sizes / Availability / Pricing:
Size Availability Price Quantity
0.001 G 10-20 days ฿7,980.00
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AMP-PCP disodium
AMP-PCP disodium is widely used in biochemical research as a non-hydrolyzable analog of ATP. It serves as a valuable tool in studying ATP-dependent processes, such as enzyme mechanisms and protein interactions, by mimicking ATP without being metabolized. This compound is particularly useful in crystallography to stabilize protein structures in their ATP-bound states, providing insights into molecular binding sites and conformational changes. Additionally, it is employed in competitive binding assays to investigate the specificity and affinity of ATP-binding proteins, aiding in the development of targeted inhibitors for therapeutic applications. Its stability and resistance to hydrolysis make it a reliable choice for experiments requiring precise control over ATP-like interactions.
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