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Oleoyl coenzyme A lithium salt (CAS 188824-37-5)

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Alternate Names:
cis-9-Octadecenoyl coenzyme A
Application:
Oleoyl coenzyme A lithium salt is may be used to study the specificity and kinetics of enzymes such as acyl-coenzyme A:cholesterol acyltransferase 1 (ACAT1)
CAS Number:
188824-37-5
Purity:
≥90%
Molecular Weight:
1031.98
Molecular Formula:
C39H68N7O17P3S
For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.
* Refer to Certificate of Analysis for lot specific data.

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Oleoyl coenzyme A lithium salt is a intermediate in the process of fatty acid metabolism within cells. It plays a key role in the transportation of long-chain fatty acids into the mitochondria, where they undergo beta-oxidation to produce energy. Oleoyl coenzyme A lithium salt interacts with various enzymes and carrier proteins involved in fatty acid metabolism, facilitating the transfer of fatty acids across cellular membranes and into the mitochondria. By doing so, it contributes to the regulation of cellular energy production and lipid homeostasis. Oleoyl coenzyme A lithium salt is involved in the synthesis of complex lipids, such as phospholipids and triglycerides, which are key components of cellular membranes and energy storage. Its presence is critical for the proper functioning of cellular processes and pathways related to energy metabolism and lipid synthesis.


Oleoyl coenzyme A lithium salt (CAS 188824-37-5) References

  1. Acylation of monolysocardiolipin in rat heart.  |  Ma, BJ., et al. 1999. J Lipid Res. 40: 1837-45. PMID: 10508203
  2. Fatty acid synthesis in pea root plastids is inhibited by the action of long-chain acyl- coenzyme as on metabolite transporters.  |  Fox, SR., et al. 2001. Plant Physiol. 126: 1259-65. PMID: 11457976
  3. A Comparison of Oleic Acid Metabolism in the Soybean (Glycine max [L.] Merr.) Genotypes Williams and A5, a Mutant with Decreased Linoleic Acid in the Seed.  |  Martin, BA. and Rinne, RW. 1986. Plant Physiol. 81: 41-4. PMID: 16664804
  4. Wax ester synthesis is required for Mycobacterium tuberculosis to enter in vitro dormancy.  |  Sirakova, TD., et al. 2012. PLoS One. 7: e51641. PMID: 23272127
  5. Oleoyl coenzyme A regulates interaction of transcriptional regulator RaaS (Rv1219c) with DNA in mycobacteria.  |  Turapov, O., et al. 2014. J Biol Chem. 289: 25241-9. PMID: 25012658
  6. Platelet aggregation is inhibited by long chain acyl-CoA.  |  Lascu, I., et al. 1988. Biochem Biophys Res Commun. 156: 1020-5. PMID: 3142460
  7. Role of fatty acyl coenzyme A oxidase in the efflux of oxidized glutathione from perfused livers of rats treated with the peroxisome proliferator nafenopin.  |  Conway, JG., et al. 1987. Cancer Res. 47: 4795-800. PMID: 3621175
  8. Fatty acyl coenzyme A-sensitive adenine nucleotide transport in a reconstituted liposome system.  |  Woldegiorgis, G., et al. 1981. J Biol Chem. 256: 12297-300. PMID: 6271781
  9. Novel formation of S-methylacylthioester from oleoyl coenzyme A and S-adenosylmethionine in the presence of FeSO4.  |  Zatz, M., et al. 1983. J Biol Chem. 258: 5759-63. PMID: 6853544
  10. Interaction of oleoyl coenzyme A with phospholipid bilayers.  |  Lichtenstein, AH., et al. 1982. Biochemistry. 21: 2233-41. PMID: 7093242
  11. Biosynthesis of S-methyl-N-oleoylmercaptoethylamide from oleoyl coenzyme A and S-adenosylmethionine.  |  Zatz, M., et al. 1982. J Biol Chem. 257: 13673-8. PMID: 7142172
  12. Analysis of acyl coenzyme A binding to the transcription factor FadR and identification of amino acid residues in the carboxyl terminus required for ligand binding.  |  Raman, N. and DiRusso, CC. 1995. J Biol Chem. 270: 1092-7. PMID: 7836365
  13. The acylation of lysophosphatidylglycerol in rat heart: evidence for both in vitro and in vivo activities.  |  Cheng, P., et al. 1996. Biochim Biophys Acta. 1302: 61-8. PMID: 8695656

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

Oleoyl coenzyme A lithium salt, 5 mg

sc-215626
5 mg
$212.00

Oleoyl coenzyme A lithium salt, 10 mg

sc-215626A
10 mg
$372.00