Basic information Safety Supplier Related

ACETYL COENZYME A TRILITHIUM SALT

Basic information Safety Supplier Related

ACETYL COENZYME A TRILITHIUM SALT Basic information

Product Name:
ACETYL COENZYME A TRILITHIUM SALT
Synonyms:
  • ACETYL-S-COA LI3
  • ACETYL-COENZYME A, TRILITHIUM
  • ACETYL COENZYME A TRILITHIUM SALT
  • ACETYL COENZYME A, LITHIUM
  • ACETYL COENZYME A LITHIUM SALT
  • ACETYL-COA TRILITHIUM SALT
  • ACETYL-COA LI3
  • C2:0
CAS:
75520-41-1
MF:
C23H39LiN7O17P3S
MW:
817.52
EINECS:
278-233-4
Mol File:
75520-41-1.mol
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ACETYL COENZYME A TRILITHIUM SALT Chemical Properties

storage temp. 
−20°C
solubility 
Soluble in water (10 mg/ml)
form 
solid
color 
White
Stability:
Stable for 2 years as supplied. Solutions in water may be stored at -20°C for up to 2 weeks.
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Safety Information

Hazard Codes 
Xi
Risk Statements 
36/37/38
Safety Statements 
26-36/37
WGK Germany 
3
3-10-21
HS Code 
2934999090

MSDS

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ACETYL COENZYME A TRILITHIUM SALT Usage And Synthesis

Description

Acetyl-CoA (75520-41-1) is an essential cofactor for cellular metabolism, being an ‘activated acetate’ that shuttles its moieties back and forth during anabolic, catabolic, and metabolic processes involving fundamental molecules: fatty acids, amino acids, glucose, and ATP.1 In the laboratory, it can be used as a substrate in chloramphenicol acetyltransferase (CAT) transcription reporter assays2 or in histone acetyltransferase (HAT) assays in epigenetics research3.

Chemical Properties

White amorphous powder

Uses

Acetyl Coenzyme?A Lithium Salt is an important molecule in enzymatic acetyl transfer reactions. It is the source of the phosphopantetheine group that is added as a prosthetic group to acyl carrier proteins and formyltetrahydrofolate dehydrogenase.

in vivo

Acetyl coenzyme A trilithium blunts pressure overload-induced cardiomyopathy in a mice cardiac pressure overload model by Suppressing maladaptive autophagy[2][3]. Mice deprived of food (but with access to water ad libitum) for 24 h exhibit a significant reduction in total Acetyl coenzyme A levels in several organs, including the heart and muscles, corresponding to a decrease in protein acetylation levels. However, the same experimental conditions have no major effects on Acetyl coenzyme A concentrations in the brain and actually increase hepatic Acetyl coenzyme A and protein acetylation levels[4].

References

[1] WOLFE A J. The acetate switch.[J]. Microbiology and molecular biology reviews : MMBR, 2005: 12-50. DOI:10.1128/mmbr.69.1.12-50.2005
[2] C M GORMAN  B H H  L F Moffat. Recombinant genomes which express chloramphenicol acetyltransferase in mammalian cells.[J]. Molecular and Cellular Biology, 1982, 2 9: 1044-1051. DOI:10.1128/mcb.2.9.1044-1051.1982
[3] YOUNGJOO KIM  John M D  Kirk G Tanner. A Continuous, Nonradioactive Assay for Histone Acetyltransferases[J]. Analytical biochemistry, 2000, 280 2: Pages 308-314. DOI:10.1006/abio.2000.4546

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