| Literature DB >> 21527882 |
Venkata Sai Prakash Chaturvedula1, Mani Upreti, Indra Prakash.
Abstract
Three novel diterpene glycosides were isolated for the first time from the commercial extract of the leaves of Stevia rebaudiana, along with several known steviol glycosides, namely stevioside, rebaudiosides A-F, rubusoside and dulcoside A. The new compounds were identified as 13-[(2-O-β-D-glucopyranosyl-3-O-β-D-glucopyranosyl-β-D-glucopyranosyl)oxy] ent-kaur-15-en-19-oic acid, 13-[(2-O-β-D-glucopyranosyl-3-O-β-D-glucopyranosyl-β-D-glucopyranosyl)oxy]-16β-hydroxy-ent-kauran-19-oic acid and 13-methyl-16-oxo-17-nor-ent-kauran-19-oic acid-β-D-glucopyranosyl ester on the basis of extensive 2D NMR and MS spectroscopic data as well as chemical studies.Entities:
Mesh:
Substances:
Year: 2011 PMID: 21527882 PMCID: PMC6263263 DOI: 10.3390/molecules16053552
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1Structures of 1-3.
1H-NMR chemical shift values for 1–3 isolated from Stevia rebaudiana recorded in CD3OD a.
| Position | 1 | 2 | 3 |
|---|---|---|---|
| 1 | 0.86 (m, 1H), 1.86 (m, 1H) | 0.86 (m, 1H), 1.86 (m, 1H) | 0.97 (m, 1H), 1.71 (m, 1H) |
| 2 | 1.39 (m, 1H), 1.90 (m, 1H) | 1.42 (m, 1H), 1.94 (m, 1H) | 1.38 (m, 1H), 1.90 (m, 1H) |
| 3 | 1.02 (m, 1H), 2.10 (d, 11.9, 1H) | 1.00 (m, 1H), 2.12 (d, 12.6, 1H) | 1.08 (m, 1H), 2.18 (d, 13.7, 1H) |
| 5 | 1.08 (m, 1H) | 1.07 (m, 1H) | 1.22 (m, 1H) |
| 6 | 1.52 (m, 1H), 1.83 (m, 1H) | 1.82 (m, 1H), 1.97 (m, 1H) | 1.90 (m, 2H) |
| 7 | 1.50 (m, 1H), 1.58 (m, 1H) | 1.37 (m, 1H), 1.58 (m, 1H) | 1.49 (m, 1H), 1.68 (m, 1H) |
| 9 | 0.86 (m, 1H) | 0.93 (t, | 1.24 (m, 1H) |
| 11 | 1.50 (m, 1H), 1.69 (m, 1H) | 1.65 (m, 1H), 1.85 (m, 1H) | 1.23 (m, 1H), 1.68 (m, 1H) |
| 12 | 1.63 (m, 1H), 1.67 (m, 1H) | 1.80 (m, 1H), 1.04 (m, 1H) | 1.43 (m, 1H), 1.53 (m, 1H) |
| 14 | 1.68 (m, 1H), 2.23 (d, 10.0, 1H) | 1.84 (m, 1H), 1.98 (d, 10.0, 1H) | 1.45 (m, 1H), 1.56 (m, 1H) |
| 15 | 5.14 (s, 1H) | 1.42 (d, 13.7, 1H), 1.60 (d, 13.7, 1H) | 1.84 (m, 1H), 2.63 (dd, 3.3, 18.9, 1H) |
| 17 | 1.72 (s, 3H) | 1.27 (s, 3H) | 0.81 (s, 3H) |
| 19 | 1.17 (s, 3H) | 1.16 (s, 3H) | 1.23 (s, 3H) |
| 20 | 0.99 (s, 3H) | 0.98 (s, 3H) | 0.94 (s, 3H) |
| 1′ | 4.66 (d, 7.8, 1H) | 4.66 (d, 8.2, 1H) | 5.39 (d, 8.2, 1H) |
| 2′ | 3.57 (m, 1H) | 3.56 (m, 1H) | 3.33 (dd, 7.5, 8.0, 1H) |
| 3′ | 3.77 (m, 1H) | 3.74 (m, 1H) | 3.43 (dd, 8.2, 8.9, 1H) |
| 4′ | 3.36 (m, 1H) | 3.34 (m, 1H) | 3.32 (dd, 8.4, 9.2, 1H) |
| 5′ | 3.28 (m, 1H) | 3.30 (m, 1H) | 3.36 (ddd, 8.4, 1.8, 6.9, 1H) |
| 6′ | 3.64 (m, 1H), 3.80 (m, 1H) | 3.67 (m, 1H), 3.88 (m, 1H) | 3.67 (dd, 2.1, 11.4, 1H), 3.80 (dd, 4.2, 12.2, 1H) |
| 1′′ | 4.85 (d, 7.8, 1H) | 4.89 (d, 7.8, 1H) | |
| 2′′ | 3.24 (m, 1H) | 3.25 (m, 1H) | |
| 3′′ | 3.32 (m, 1H) | 3.42 (m, 1H) | |
| 4′′ | 3.33 (m, 1H) | 3.32 (m, 1H) | |
| 5′′ | 3.33 (m, 1H) | 3.36 (m, 1H) | |
| 6′′ | 3.56 (m, 1H), 3.81 (m, 1H) | 3.60 (m, 1H), 3.80 (m, 1H) | |
| 1′′′ | 4.72 (d, 7.8, 1H) | 4.74 (d, 7.8, 1H) | |
| 2′′′ | 3.27 (m, 1H) | 3.25 (m, 1H) | |
| 3′′′ | 3.33 (m, 1H) | 3.32 (m, 1H) | |
| 4′′′ | 3.32 (m, 1H) | 3.32 (m, 1H) | |
| 5′′′ | 3.36 (m, 1H) | 3.36 (m, 1H) | |
| 6′′′ | 3.67 (m, 1H), 3.71 (m, 1H) | 3.65 (m, 1H), 3.80 (m, 1H) |
assignments made on the basis of COSY, HSQC and HMBC correlations; Chemical shift values are in δ (ppm); Coupling constants are in Hz.
Figure 2Key COSY and HMBC correlations of 1.
13C NMR chemical shift values for 1–3 isolated from Stevia rebaudiana recorded in CD3OD a.
| Position | 1 | 2 | 3 |
|---|---|---|---|
| 1 | 40.9 | 42.0 | 39.7 |
| 2 | 19.1 | 19.0 | 19.2 |
| 3 | 37.9 | 38.0 | 38.1 |
| 4 | 43.5 | 43.5 | 43.8 |
| 5 | 56.5 | 55.3 | 57.4 |
| 6 | 20.9 | 21.2 | 20.8 |
| 7 | 39.6 | 39.3 | 41.3 |
| 8 | 48.3 | 41.8 | 48.6 |
| 9 | 48.0 | 55.2 | 54.0 |
| 10 | 39.8 | 40.6 | 37.8 |
| 11 | 20.6 | 20.2 | 21.2 |
| 12 | 30.4 | 37.2 | 38.7 |
| 13 | 91.4 | 86.8 | 94.4 |
| 14 | 48.1 | 43.4 | 54.7 |
| 15 | 136.1 | 56.9 | 48.1 |
| 16 | 142.6 | 76.8 | 224.0 |
| 17 | 11.4 | 21.8 | 12.9 |
| 18 | 180.4 | 180.3 | 176.9 |
| 19 | 29.0 | 28.3 | 27.8 |
| 20 | 15.3 | 15.1 | 19.0 |
| 1′ | 96.6 | 95.8 | 95.3 |
| 2′ | 80.1 | 79.8 | 73.8 |
| 3′ | 87.5 | 86.8 | 77.4 |
| 4′ | 70.2 | 69.8 | 69.9 |
| 5′ | 77.3 | 77.2 | 77.5 |
| 6′ | 61.4 | 61.5 | 61.2 |
| 1′′ | 103.1 | 103.0 | |
| 2′′ | 74.2 | 74.0 | |
| 3′′ | 77.3 | 77.4 | |
| 4′′ | 70.3 | 70.2 | |
| 5′′ | 77.1 | 77.2 | |
| 6′′ | 61.4 | 61.3 | |
| 1′′′ | 102.5 | 102.6 | |
| 2′′′ | 73.8 | 74.6 | |
| 3′′′ | 77.1 | 77.0 | |
| 4′′′ | 70.3 | 70.4 | |
| 5′′′ | 77.4 | 77.2 | |
| 6′′′ | 61.5 | 61.3 |
assignments made on the basis of HSQC and HMBC correlations; Chemical shift values are in δ (ppm).
Figure 3Key COSY and HMBC correlation of 2.
Figure 4Key COSY and HMBC correlations of 3.