| Literature DB >> 23047483 |
Jie Guo1, Li-Yan Zhou, Hong-Ping He, Ying Leng, Zhen Yang, Xiao-Jiang Hao.
Abstract
The roots of Euphorbia kansui are considered an important traditional folk medicine. In this study the ethanol extracts of E. kansui were investigated. A new tetracyclic triterpenoid, euphane-3b,20-dihydroxy-24-ene, in addition to five known triterpenoids with euphane skeletons were isolated. Their structures were elucidated on the basis of physical and spectral techniques (1D-, 2D-NMR and MS, respectively). Furthermore, these compounds 1-6 exhibited strong inhibitory activity against human 11b-hydroxysteroid dehydrogenase type 1 (11b-HSD1), with IC(50) values of 34.86 nM, 1.115 mM, 16.08 nM, 2.815 nM, 26.47 nM, 15.99 nM, and 41.86 nM, respectively. The docking results show that the ring part of compounds can insert into the hydrophobic core of h11b-HSD1 and the alkane chain orientates toward the outside. The results presented herein provide a scientific explanation for the usage of the E. kansui in clinical treatment of diabetes.Entities:
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Year: 2012 PMID: 23047483 PMCID: PMC6268726 DOI: 10.3390/molecules171011826
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1Structures of the triterpenoids 1–6 isolated from Euphorbia kansui.
Figure 2Selected two-dimensional NMR correlations of compound 1.
Figure 3Key ROESY correlations of compound 1.
Inhibition of 11β-HSD1.
| Compounds | Mouse 11β-HSD1 (IC50) | Mouse 11β-HSD2 (IC50) | Mouse HSD2/HSD1 | Human 11β-HSD1 (IC50) | Human 11β-HSD2 (IC50) | Human HSD2/HSD1 |
|---|---|---|---|---|---|---|
| Compound | 78.44 nM | >1 mM | >12748 | 34.86 nM | 8.179 μM | 234.6 |
| Compound | 1.077 μM | >1 mM | >928 | 1.115 μM | 2.626 μM | 2.35 |
| Compound | 80.52 nM | >1 mM | >12419 | 16.08 nM | 0.3952 μM | 24.6 |
| Compound | 13.36 nM | >1 mM | >74850 | 2.815 nM | 0.107 μM | 38 |
| Compound | 49.46 nM | >1 mM | >20218 | 26.47 nM | 1.687 μM | 63.7 |
| Compound | 294.7 nM | >1 mM | >3393 | 15.99 nM | 0.6664 μM | 41.7 |
Figure 4The binding mode of compounds 1,3,5, and 6. Purple: compound 1; Cyan: compound 3; Yellow: compound 5; Orange: compound 6.
Figure 5The binding mode of compound 2 and 4. Cyan: compound 3; Orange: compound 2; Yellow: compound 4.
Figure 6The sequence alignments of hHSD1 and hHSD2, the residues formed binding pocket were colored yellow.