| Literature DB >> 19597579 |
Dobroslawa Bialonska1, Jordan K Zjawiony.
Abstract
Aplysinopsins areEntities:
Keywords: aplysinopsins; bioactivity; ecological functions; natural source; stereochemistry
Mesh:
Substances:
Year: 2009 PMID: 19597579 PMCID: PMC2707041 DOI: 10.3390/md7020166
Source DB: PubMed Journal: Mar Drugs ISSN: 1660-3397 Impact factor: 5.118
The source and activity of aplysinopsins isolated from Nature.
| Source | Activity | |
|---|---|---|
| Anticancer [ | ||
| Anticancer [ | ||
| Serotonin receptors modulator [ | ||
| Serotonin receptors modulator [ | ||
| Antidepressant – inhibitor of monoamine oxidase [ | ||
| Inhibitor of nitric oxide synthase (nNOS) [ | ||
| Serotonin receptors modulator [ | ||
| Induces symbiosis between sea anemone and anemone fish [ | ||
| Antimicrobial [ | ||
| Antimicrobial [ | ||
| Antimicrobial [ | ||
| Antimicrobial [ | ||
| Antimicrobial [ | ||
Figure 1Structures of aplysinopsins 1–11.
General formula of aplysinopsin derivatives shown as E-isomer dominant in nature (imino-tautomer of ring C is shown).
Figure 3Structures of aplysinopins 17–20.
Figure 2Structures of aplysinopsins 12–16.
Figure 4Structures of aplysinopsins 21–23.
Figure 5Dimers of aplysinopsin-type compounds.
Compound 24: X = Br, Y = Br, R1 = H, R2 = NH
Compound 25: X = H, Y = Br, R1 = CH3, R2 = NH
Compound 26: X = H, Y = H, R1 = CH3, R2 = NH
Compound 27: X = H, Y = H, R1 = CH3, R2 = O
Affinity of aplysinopsins for human serotonin 5-HT2 receptors (equilibrium affinity constant) (after [6], modified).
| aplysinopsin | 5-HT2A ( | 5-HT2C ( | Selectivity towards 5-HT2C |
|---|---|---|---|
| isoplysin A (2) | NA | NA | -- |
| 2′-de- | NA | NA | -- |
| 6-bromo-2′-de- | >100 | 2.3 | >43 |
| 6-bromoaplysinopsin (5) | 2.0 | 0.33 | 6 |
| methylaplysinopsin (7) | NA | NA | -- |
| 1.7 | 3.5 | 0.5 | |
| Compound | X | Y | R1 | R2 | R3 | |
|---|---|---|---|---|---|---|
| aplysinopsin | H | H | CH3 | H | CH3 | |
| isoplysin A | H | H | CH3 | CH3 | H | |
| 2′-de- | H | H | H | H | CH3 | |
| 6-bromo-2′-de- | Br | H | H | H | CH3 | |
| 6-bromoaplysinopsin | Br | H | CH3 | H | CH3 | |
| 6-bromo-4′-de- | Br | H | CH3 | H | H | |
| methylaplysinopsin | H | H | CH3 | CH3 | CH3 | |
| 4′-demethyl-3′- | H | H | H | CH3 | CH3 | |
| 6-bromo-4′-demethyl-3′- | Br | H | H | CH3 | CH3 | |
| 5,6-dibromo-2′-demethylaplysinopsin | Br | Br | H | H | CH3 | |
| H | H | CH3 | CH2CH3 | CH3 | ||
| Compound | X | R | |
|---|---|---|---|
| 1′,8-dihydroaplysinopsin | H | H | |
| 6-bromo-1′,8-dihydro-aplysinopsin | Br | H | |
| 6-bromo-1′-hydroxy-1′,8-dihydroaplysinopsin | Br | OH | |
| 6-bromo-1′-methoxy-1′,8-dihydroxyaplysinopsin | Br | OCH3 | |
| 6-bromo-1′-ethoxy-1′,8-dihydroxyaplysinopsin | Br | OCH2CH3 | |
| Compound | X | R1 | R3 | |
|---|---|---|---|---|
| 3′-deimino-3′-oxo-aplysinopsin | H | CH3 | CH3 | |
| 6-bromo-3′-deimino-3′-oxoaplysinopsin | Br | CH3 | CH3 | |
| 3′-deimino-2′,4′-bis(demethyl)-3′-oxo-aplysinopsin | H | H | H | |
| 6-bromo-3′-deimino-2′,4′-bis(demethyl)-3′-oxoaplysinopsin | Br | H | H | |
| Compound | X | Z | R2 | |
|---|---|---|---|---|
| N-propionylaplysinopsin | H | OCCH2CH3 | H | |
| 6-bromo-N-propionylaplysinopsin | Br | OCCH2CH3 | H | |
| N-methylaplysinopsin | H | CH3 | H |