Details
Stereochemistry | ABSOLUTE |
Molecular Formula | C23H30O6 |
Molecular Weight | 402.4807 |
Optical Activity | UNSPECIFIED |
Defined Stereocenters | 4 / 4 |
E/Z Centers | 4 |
Charge | 0 |
SHOW SMILES / InChI
SMILES
COC1=CC(=O)OC(\C=C\C=C\C=C\C(C)=C\[C@]2(C)O[C@H](C)[C@](C)(O)[C@H]2O)=C1C
InChI
InChIKey=JLSVDPQAIKFBTO-OMCRQDLASA-N
InChI=1S/C23H30O6/c1-15(14-22(4)21(25)23(5,26)17(3)29-22)11-9-7-8-10-12-18-16(2)19(27-6)13-20(24)28-18/h7-14,17,21,25-26H,1-6H3/b8-7+,11-9+,12-10+,15-14+/t17-,21+,22+,23+/m1/s1
Molecular Formula | C23H30O6 |
Molecular Weight | 402.4807 |
Charge | 0 |
Count |
|
Stereochemistry | ABSOLUTE |
Additional Stereochemistry | No |
Defined Stereocenters | 4 / 4 |
E/Z Centers | 4 |
Optical Activity | UNSPECIFIED |
Citreoviridin (CIT) is a mycotoxin produced by Penicillum citreonigrum, Aspergillus terreus and Eupenicillium ochrosalmoneum. CIT occurs naturally in moldy rice and corn. CIT is associated with the development of atherosclerosis in the general population. Citreoviridin displays the ability to potently inhibit mitochondrial ATPases via uncompetitive inhibition of ATP hydrolysis. Additional research shows that Citreoviridin can inhibit ATP-driven reduction of NAD+ by succinate and ATP driven NAD transhydrogenase in ox hearts. Citreoviridin inhibits both membrane-bound and soluble mitochondrial ATPases. In particular, it inhibits synaptosomal Na+/K+-ATPase, altering synaptic transmission, and binds to the beta subunit of F1-ATPAse. As a result it has been shown to inhibit mitochondrial energy-linked reactions such as ADP-stimulated respiration, ATP-driven reduction of NAD + by succinate, and ATP-driven NAD transhydrogenase. Mycotoxins are often able to enter the liver and kidney by human organic anion transporters (hOATs) and human organic cation transporters (hOCTs). They can also inhibit uptake of anions and cations by these transporters, interfering with the secretion of endogenous metabolites, drugs, and xenobiotics including themselves. This results in increased cellular accumulation of toxic compounds causing nephro- and hepatotoxicity. citreoviridin could
specifically kill cancer cells but not normal cells because of
ectopically expressed ATP synthase (ecto-ATP synthase) on
plasma membrane of cancer cells.
CNS Activity
Approval Year
Targets
Primary Target | Pharmacology | Condition | Potency |
---|---|---|---|
Target ID: CHEMBL239 Sources: https://www.ncbi.nlm.nih.gov/pubmed/28645467 |
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2.0 µM [Ki] |
Conditions
Condition | Modality | Targets | Highest Phase | Product |
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Primary | Unknown Approved UseUnknown |
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Primary | Unknown Approved UseUnknown |
Sample Use Guides
In Vivo Use Guide
Sources: https://www.ncbi.nlm.nih.gov/pubmed/28645467
Mice: Citreoviridin (0.1 mg/kg-0.3 mg/kg) for 6 weeks elevated liver triglyceride contents in mice.
Route of Administration:
Oral
In Vitro Use Guide
Sources: https://www.ncbi.nlm.nih.gov/pubmed/2523213
Curator's Comment: The effect of citreoviridin on soluble and membrane-bound beef heart mitochondrial F1-ATPase activity was investigated.
The inhibition constant, Ki for citreoviridin was determined as 4.5 uM for ATP hydrolysis. The inhibition constants Kii and Kis for ITP hydrolysis were determined as 4.3 and 1.03 uM, respectively. Citreoviridin was an uncompetitive inhibitor of ATP hydrolysis and a noncompetitive inhibitor of ATP synthesis catalyzed by membrane-bound F1-ATPase. The inhibition constant, Ki, for ATP hydrolysis was around 4 uM. For ATP synthesis the inhibition constants were determined as 0.12 and 0.16 uM for Kis and Kii, respectively, when ADP concentration was kept saturating.
Substance Class |
Chemical
Created
by
admin
on
Edited
Fri Dec 15 19:40:01 GMT 2023
by
admin
on
Fri Dec 15 19:40:01 GMT 2023
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Record UNII |
OWX7Q6CF4F
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Record Status |
Validated (UNII)
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Record Version |
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