Click
here to close Hello! We notice that
you are using Internet Explorer, which is not supported by Echinobase
and may cause the site to display incorrectly. We suggest using a
current version of Chrome,
FireFox,
or Safari.
Mar Drugs
2021 Dec 07;1912:. doi: 10.3390/md19120696.
Show Gene links
Show Anatomy links
Triterpene Glycosides from the Far Eastern Sea Cucumber Psolus chitonoides: Chemical Structures and Cytotoxicities of Chitonoidosides E1, F, G, and H.
Silchenko AS
,
Kalinovsky AI
,
Avilov SA
,
Andrijaschenko PV
,
Popov RS
,
Chingizova EA
,
Kalinin VI
,
Dmitrenok PS
.
???displayArticle.abstract???
Four new triterpene disulfated glycosides, chitonoidosides E1 (1), F (2), G (3), and H (4), were isolated from the Far-Eastern sea cucumber Psolus chitonoides and collected near Bering Island (Commander Islands) at depths of 100-150 m. Among them there are two hexaosides (1 and 3), differing from each other by the terminal (sixth) sugar residue, one pentaoside (4) and one tetraoside (2), characterized by a glycoside architecture of oligosaccharide chains with shortened bottom semi-chains, which is uncommon for sea cucumbers. Some additional distinctive structural features inherent in 1-4 were also found: the aglycone of a recently discovered new type, with 18(20)-ether bond and lacking a lactone in chitonoidoside G (3), glycoside 3-O-methylxylose residue in chitonoidoside E1 (1), which is rarely detected in sea cucumbers, and sulfated by uncommon position 4 terminal 3-O-methylglucose in chitonoidosides F (2) and H (4). The hemolytic activities of compounds 1-4 and chitonoidoside E against human erythrocytes and their cytotoxic action against the human cancer cell lines, adenocarcinoma HeLa, colorectal adenocarcinoma DLD-1, and monocytes THP-1, were studied. The glycoside with hexasaccharide chains (1, 3 and chitonoidoside E) were the most active against erythrocytes. A similar tendency was observed for the cytotoxicity against adenocarcinoma HeLa cells, but the demonstrated effects were moderate. The monocyte THP-1 cell line and erythrocytes were comparably sensitive to the action of the glycosides, but the activity of chitonoidosides E and E1 (1) significantly differed from that of 3 in relation to THP-1 cells. A tetraoside with a shortened bottom semi-chain, chitonoidoside F (2), displayed the weakest membranolytic effect in the series.
Figure 1. Chemical structures of glycosides isolated from Psolus chitonoides: 1âchitonoidoside E1; 2âchitonoidoside F; 3âchitonoidoside G; 4âchitonoidoside H.
Figure 2. Biosynthetic network of carbohydrate chains of chitonoidosides of the groups AâH.
Aminin,
Glycosides from edible sea cucumbers stimulate macrophages via purinergic receptors.
2016, Pubmed,
Echinobase
Aminin,
Glycosides from edible sea cucumbers stimulate macrophages via purinergic receptors.
2016,
Pubmed
,
Echinobase
Dyshlovoy,
The marine triterpene glycoside frondoside A induces p53-independent apoptosis and inhibits autophagy in urothelial carcinoma cells.
2017,
Pubmed
,
Echinobase
Kalinin,
Non-holostane aglycones of sea cucumber triterpene glycosides. Structure, biosynthesis, evolution.
2019,
Pubmed
,
Echinobase
Kalinin,
Triterpene glycosides of sea cucumbers (Holothuroidea, Echinodermata) as taxonomic markers.
2015,
Pubmed
,
Echinobase
Khotimchenko,
Pharmacological Potential of Sea Cucumbers.
2018,
Pubmed
,
Echinobase
Maltsev,
Triterpene glycosides from sea cucumber Stichopus japonicus Selenka.
1984,
Pubmed
,
Echinobase
Menchinskaya,
Modulation of Doxorubicin Intracellular Accumulation and Anticancer Activity by Triterpene Glycoside Cucumarioside A2-2.
2019,
Pubmed
,
Echinobase
Silchenko,
Structures and Bioactivities of Six New Triterpene Glycosides, Psolusosides E, F, G, H, H1, and I and the Corrected Structure of Psolusoside B from the Sea Cucumber Psolus fabricii.
2019,
Pubmed
,
Echinobase
Silchenko,
Triterpene Glycosides from the Far Eastern Sea Cucumber Thyonidium (=Duasmodactyla) kurilensis (Levin): The Structures, Cytotoxicities, and Biogenesis of Kurilosides A3, D1, G, H, I, I1, J, K, and K1.
2021,
Pubmed
,
Echinobase
Silchenko,
Unusual Structures and Cytotoxicities of Chitonoidosides A, A1, B, C, D, and E, Six Triterpene Glycosides from the Far Eastern Sea Cucumber Psolus chitonoides.
2021,
Pubmed
,
Echinobase
Silchenko,
Structures and Bioactivities of Quadrangularisosides A, A1, B, B1, B2, C, C1, D, D1-D4, and E from the Sea Cucumber Colochirus quadrangularis: The First Discovery of the Glycosides, Sulfated by C-4 of the Terminal 3-O-Methylglucose Residue. Synergetic Effect on Colony Formation of Tumor HT-29 Cells of these Glycosides with Radioactive Irradiation.
2020,
Pubmed
,
Echinobase
Silchenko,
Kurilosides A1, A2, C1, D, E and F-Triterpene Glycosides from the Far Eastern Sea Cucumber Thyonidium (= Duasmodactyla) kurilensis (Levin): Structures with Unusual Non-Holostane Aglycones and Cytotoxicities.
2020,
Pubmed
,
Echinobase
Zelepuga,
Structure-Activity Relationships of Holothuroid's Triterpene Glycosides and Some In Silico Insights Obtained by Molecular Dynamics Study on the Mechanisms of Their Membranolytic Action.
2021,
Pubmed
,
Echinobase
Zhao,
Saponins from Sea Cucumber and Their Biological Activities.
2018,
Pubmed
,
Echinobase