| Literature DB >> 30621331 |
Zhu-Jun Fang1, Sheng-Nan Shen2, Jia-Min Wang3, Yong-Jiang Wu4, Chang-Xin Zhou5, Jian-Xia Mo6, Li-Gen Lin7, Li-She Gan8,9.
Abstract
Four previously undescribed compounds, including three rarely occurring seco-dammarane triterpenoid glycosides and a pentacyclic triterpenic acid, were isolated from a 70% ethanol extract of the leaves of Cyclocarya paliurus (Juglandaceae), along with eleven known triterpenoids. Their structures were determined by spectroscopic techniques, including 2D NMR and HRESIMS, as well as chemical methods. Among them, several triterpenoids enhanced insulin stimulated glucose uptake in both 3T3-L1 adipocytes and C2C12 myotubes. Furthermore, compound 1 dose-dependently increased glucose uptake through activating AMP-activated protein kinase (AMPK)-p38 pathway. Collectively, triterpenoids from C. paliurus could be developed as insulin sensitizers, which might have therapeutic potential for insulin resistance and hyperglycemia.Entities:
Keywords: Cyclocarya paliurus (Juglandaceae); adipocytes; glucose uptake; seco-dammarane triterpenoids
Mesh:
Substances:
Year: 2019 PMID: 30621331 PMCID: PMC6337507 DOI: 10.3390/molecules24010187
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1Chemical structures of compounds 1–4.
1H-(500 MHz, δ in ppm, J in Hz) and 13C-NMR (125 MHz, δ in ppm) data of compounds 1–4 in CD3OD.
| No. | 1 | 2 | 3 | 4 | ||||
|---|---|---|---|---|---|---|---|---|
| δH | δC | δH | δC | δH | δC | δH | δC | |
| 1 | a 1.53, m | 38.4 | a 1.47, m | 38.3 | a 1.42, m | 38.0 | 215.4 | |
| b 2.52, m | b 2.53, dt (13.3, 5.0) | b 2.46, m | ||||||
| 2 | a 2.26, m | 30.8 | a 2.29, dt (13.3, 3.5) | 30.7 | a 2.27, dt (13.3, 3.3) | 30.5 | α 2.29, dd (11.9, 4.9) | 44.8 |
| b 2.66, dt (12.9, 5.2) | b 2.74, dt (13.0, 5.0) | b 2.74, dt (13.3, 5.1) | β 3.12, t (11.9) | |||||
| 3 | 180.2 | 178.3 | 177.9 | 3.82, dd (12.1, 4.9) | 73.5 | |||
| 4 | 149.3 | 149.3 | 149.3 | 44.1 | ||||
| 5 | 2.05, dd (12.7, 2.8) | 53.0 | 2.04, dd (12.8, 2.9) | 53.1 | 2.04, dd (12.8, 2.9) | 53.1 | 1.39, m | 47.9 |
| 6 | α 1.86, m | 27.4 | α 1.85, m | 27.4 | α 1.85, m | 27.5 | α 1.57, m | 18.6 |
| β 1.45, m | β 1.49, m | β 1.47, m | β 1.57, m | |||||
| 7 | α 1.59, m | 35.8 | α 1.59, dt (13.0, 3.3) | 35.8 | α 1.59, dt (12.9, 3.3) | 35.7 | α 1.55, m | 33.3 |
| β 1.22, m | β 1.21, m | β 1.22, m | β 1.29, m | |||||
| 8 | 40.9 | 40.9 | 40.9 | 40.5 | ||||
| 9 | 1.95, m | 45.4 | 1.95, m | 45.4 | 1.93, m | 45.5 | 2.40, m | 40.8 |
| 10 | 41.9 | 41.9 | 41.9 | 53.6 | ||||
| 11 | α 2.46, m | 33.8 | α 2.46, dt (12.5, 4.1) | 34.0 | α 2.42, m | 34.3 | α 2.44, m | 26.5 |
| β 1.34, m | β 1.35, m | β 1.37, m | β 1.88, ddd (12.5, 11.3, 5.4) | |||||
| 12 | 4.07, dt (10.7, 4.7) | 76.5 | 4.05, dt (10.8, 4.9) | 76.6 | 4.03, dt (10.8, 5.0) | 76.5 | 5.30, m | 125.3 |
| 13 | 1.70, m | 41.9 | 1.70, m | 41.9 | 1.70, m | 41.8 | 144.0 | |
| 14 | 51.4 | 51.4 | 51.4 | 42.8 | ||||
| 15 | α 1.49, m | 32.3 | α 1.44, m | 32.3 | α 1.45, m | 32.4 | α 1.00, m | 29.6 |
| β 1.13, m | β 1.12, m | β 1.12, m | β 1.72, m | |||||
| 16 | α 1.99, m | 27.1 | α 1.98, m | 27.1 | α 1.98, m | 27.0 | α 2.25, m | 28.7 |
| β 1.81, m | β 1.80, m | β 1.80, m | β 1.59. m | |||||
| 17 | 1.92, m | 50.2 | 1.93, m | 50.2 | 1.92, m | 50.1 | 47.0 | |
| 18 | 1.06, s | 16.9 | 1.05, s | 16.9 | 1.05, s | 16.8 | 3.06, br s | 45.5 |
| 19 | 1.10, s | 20.6 | 1.09, s | 20.6 | 1.09, s | 20.5 | 3.27, d (3.6) | 82.4 |
| 20 | 87.8 | 87.8 | 87.9 | 36.1 | ||||
| 21 | 1.16, s | 25.5 | 1.16, s | 25.5 | 1.16, s | 25.2 | α 1.64, m | 29.6 |
| β 1.00, m | ||||||||
| 22 | α 1.73, m | 35.0 | α 1.74, m | 35.0 | α 1.73, m | 34.8 | α 1.62, m | 34.0 |
| β 1.65, m | β 1.67, m | β 1.66, m | β 1.78, m | |||||
| 23 | α 1.89, m | 26.1 | α 1.89, m | 26.1 | α 1.89, m | 26.1 | a 3.33, d (11.2) | 65.9 |
| β 1.31, m | β 1.31, m | β 1.32, m | b 3.50, d (11.2) | |||||
| 24 | 3.79, m | 84.9 | 3.79, m | 84.9 | 3.79, dd (7.8, 6.6) | 84.9 | 0.88, s | 13.2 |
| 25 | 72.7 | 72.6 | 72.8 | 1.35, s | 15.9 | |||
| 26 | 1.19, s | 26.6 | 1.19, s | 26.6 | 1.21, s | 26.8 | 0.85, s | 18.2 |
| 27 | 1.16, s | 24.4 | 1.16, s | 24.5 | 1.15, s | 24.6 | 1.33, s | 25.1 |
| 28 | a 4.72, d (1.4) | 114.1 | a 4.71, d (1.6) | 114.1 | a 4.70, d (1.6) | 114.0 | 182.9 | |
| b 4.85, d (1.4) | b 4.84, d (1.6) | b 4.84, d (1.6) | ||||||
| 29 | 1.77, s | 24.0 | 1.76, s | 24.0 | 1.76, s | 23.9 | 0.94, s | 28.7 |
| 30 | 1.00, s | 16.9 | 1.00, s | 16.9 | 0.99, s | 16.9 | 0.97, s | 25.2 |
| 1′ | 4.29, d (7.1) | 101.2 | 4.28, d (7.1) | 101.4 | 4.36, d (7.7) | 100.4 | ||
| 2′ | 3.50, dd (9.6, 7.1) | 72.8 | 3.50, dd (9.6, 7.1) | 72.8 | 3.18, dd (9.3, 7.7) | 75.3 | ||
| 3′ | 3.46, dd (9.6, 3.3) | 74.6 | 3.46, dd (9.6, 3.3) | 74.6 | 3.29, m | 77.8 | ||
| 4′ | 3.77, m | 70.4 | 3.77, m | 70.3 | 3.00, t (9.1) | 77.1 | ||
| 5′ | 3.54, dd (12.7, 0.8) | 67.8 | 3.54, dd (12.7, 1.1) | 67.7 | 3.26, m | 73.0 | ||
| 3.88, dd (12.7, 1.9) | 3.88, dd (12.7, 1.9) | |||||||
| 6′ | 1.26, d (6.1) | 18.1 | ||||||
| OCH3 | 3.64, s | 52.1 | 3.63, s | 52.0 | ||||
Figure 2Key HMBC (red arrows) and NOESY (blue dotted double arrows) correlations of 1.
Figure 3Key HMBC (red arrows) and NOESY (blue dotted double arrows) correlations of 4.
Figure 4Glucose uptake of the compounds in C2C12 myotubes (A) and 3T3-L1 adipocytes (B). Data are shown as mean ± SD, n = 6. * p < 0.05, ** p < 0.01, compound vs. insulin.
Figure 5Compound 1 enhances insulin sensitivity in 3T3-L1 adipocytes through activating AMPK-p38 pathway. (A) Cell viability of mature 3T3-L1 adipocytes when treated with different concentrations of compound 1 for 24 h. (B) Compound 1 promotes insulin-stimulated glucose uptake in 3T3-L1 adipocytes. (C) Compound 1 activates the proteins in insulin signaling pathway, including IRS-1, Akt and GSK-3β. (D) Compound 1 increases the phosphorylation of AMPK and p38MAPK. Data are shown as mean ± SD, n = 6. # p < 0.05, ## p < 0.01, vehicle vs. insulin. * p < 0.05, ** p < 0.01, compound 1 vs. DMSO.
Figure 6The mechanism of action of compound 1.