hexacosanoyl Coenzyme A (ammonium salt)

  • Product Code: 64144
  CAS:    799813-02-8
Molecular Weight: 1197.30 g./mol Molecular Formula: C₄₇H₉₅N₁₀O₁₇P₃S
EC Number: MDL Number:
Melting Point: Boiling Point:
Density: Storage Condition: −20°C
Product Description: Hexacosanoyl Coenzyme A (ammonium salt) is primarily utilized in biochemical research and metabolic studies. It serves as a key substrate for investigating the enzymatic activity of acyl-CoA synthetases and acyltransferases, which are crucial in lipid metabolism. This compound is also employed in studies focused on understanding the biosynthesis and degradation of very long-chain fatty acids (VLCFAs), which play significant roles in cellular membrane structure and signaling pathways. Additionally, it is used in experiments exploring lipid-related disorders, such as adrenoleukodystrophy, to gain insights into disease mechanisms and potential therapeutic targets. Its application extends to in vitro assays for evaluating enzyme kinetics and substrate specificity in lipid metabolic pathways.
Product Specification:
Test Specification
APPEARANCE powder
Infrared spectrum Conforms to Structure
NMR Conforms to Structure
Sizes / Availability / Pricing:
Size (g) Availability Price Quantity
0.001 10-20 days ฿16,480.00
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hexacosanoyl Coenzyme A (ammonium salt)
Hexacosanoyl Coenzyme A (ammonium salt) is primarily utilized in biochemical research and metabolic studies. It serves as a key substrate for investigating the enzymatic activity of acyl-CoA synthetases and acyltransferases, which are crucial in lipid metabolism. This compound is also employed in studies focused on understanding the biosynthesis and degradation of very long-chain fatty acids (VLCFAs), which play significant roles in cellular membrane structure and signaling pathways. Additionally, it is used in experiments exploring lipid-related disorders, such as adrenoleukodystrophy, to gain insights into disease mechanisms and potential therapeutic targets. Its application extends to in vitro assays for evaluating enzyme kinetics and substrate specificity in lipid metabolic pathways.
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