| Literature DB >> 28146121 |
Indra Prakash1, Gil Ma1, Cynthia Bunders1, Romila D Charan2, Catherine Ramirez3, Krishna P Devkota4, Tara M Snyder5.
Abstract
Following our interest in new diterpene glycosides with better taste profiles than that of Rebaudioside M, we have recently isolated and characterized Rebaudioside IX-a novel steviol glycoside-from a commercially-supplied extract of Stevia rebaudiana Bertoni. This molecule contains a hexasaccharide group attached at C-13 of the central diterpene core, and contains three additional glucose units when compared with Rebaudioside M. Here we report the complete structure elucidation-based on extensive Nuclear Magnetic Resonance (NMR) analysis (1H, 13C, Correlation Spectroscopy (COSY), Heteronuclear Single Quantum Coherence-Distortionless Enhancement Polarization Transfer (HSQC-DEPT), Heteronuclear Multiple Bond Correlation (HMBC), 1D Total Correlation Spectroscopy (TOCSY), Nuclear Overhauser Effect Spectroscopy (NOESY)) and mass spectral data-of this novel diterpene glycoside with nine sugar moieties and containing a relatively rare 16 α-linked glycoside. A steviol glycoside bearing nine glucose units is unprecedented in the literature, and could have an impact on the natural sweetener catalog.Entities:
Keywords: 16 glycoside linkage; Diterpene glycosides; NMR; Stevia rebaudiana Bertoni; nine sugar steviol glycoside; structure elucidation
Mesh:
Substances:
Year: 2017 PMID: 28146121 PMCID: PMC5372722 DOI: 10.3390/biom7010010
Source DB: PubMed Journal: Biomolecules ISSN: 2218-273X
Figure 1Structures of Rebaudioside IX (1) and Rebaudioside M (2).
Figure 21H NMR spectrum of Rebaudioside IX (1) (500 MHz, 300 K) in pyridine-d5. ppm: parts per million.
1H and 13C Nuclear Magnetic Resonance (NMR) (500 and 125 MHz, 300 K) assignments of the aglycone of compound (1) in pyridine-d5.
| Atom No. | 13C NMR | 1H NMR |
|---|---|---|
| 1 | 40.7 | 0.75 m, 1.86 m |
| 2 | 20.1 | 1.36 m, 2.29 m |
| 3 | 38.9 | 1.01 m, 2.30 m |
| 4 | 44.7 | - |
| 5 | 57.9 | 1.05 d (13.1) |
| 6 | 23.9 | 2.23 m, 2.39 m |
| 7 | 43.0 | 1.40 m, 1.80 m |
| 8 | 41.6 | - |
| 9 | 54.8 | 0.91 d (7.9) |
| 10 | 40.2 | - |
| 11 | 20.6 | 1.68 m, 1.88 m |
| 12 | 39.0 | 1.95 m, 2.69 m |
| 13 | 88.0 | - |
| 14 | 43.9 | 1.99 m, 2.74 d (10.6) |
| 15 | 46.9 | 1.87 m, 2.02 m |
| 16 | 153.7 | - |
| 17 | 105.4 | 4.89 bs, 5.71 bs |
| 18 | 28.7 | 1.33 s |
| 19 | 177.3 | - |
| 20 | 17.1 | 1.37 s |
1H and 13C NMR (500 and 125 MHz, 300 K) assignments of the C-19 glycosides of compound (1) in pyridine-d5.
| Sugar | Atom No. | 13C NMR | 1H NMR |
|---|---|---|---|
| Glc I | 1 | 95.3 | 6.40 d (8.2) |
| 2 | 77.2 | 4.51 m | |
| 3 | 89.0 | 5.11 m | |
| 4 | 70.5 or 70.6 or 70.7 | 4.20 m | |
| 5 | 78.9 | 4.14 m | |
| 6 | 62.2 | 4.20 m, 4.32 m | |
| Glc V | 1 | 104.6 | 5.80 d (7.4) |
| 2 | 75.8 | 4.19 m | |
| 3 | 78.0–78.5 ¥ | 4.20 m | |
| 4 | 71.5 or 71.6 or 72.1 | 4.11 m | |
| 5 | 78.0–78.5 ¥ | 3.90 m | |
| 6 | 64.4 | 4.33 m, 4.63 m | |
| Glc VI | 1 | 104.6 | 5.29 d (7.9) |
| 2 | 75.9 | 3.95 m | |
| 3 | 78.0–78.5 ¥ | 4.35 m | |
| 4 | 71.5 or 71.6 | 4.09 m | |
| 5 | 78.0–78.5 ¥ | 3.86 m | |
| 6 | 62.2–63.4 ¥ | 4.10 m or 4.36 m, 4.30 m |
¥ Chemical shifts could not be unequivocally assigned due to very close chemical shifts or overlapping resonances.
Figure 3Summary of key Heteronuclear Multiple Bond Correlation (HMBC) and Correlation Spectroscopy (COSY) correlations used to assign the C-13 and C-19 glycoside region of compound (1).
1H and 13C NMR (500 and 125 MHz, 300K) assignments of the C-13 glycosides of compound 1 in pyridine-d5.
| Sugar | Atom No. | 13C NMR | 1H NMR |
|---|---|---|---|
| Glc II | 1 | 96.6 | 5.42 d (8.0) |
| 2 | 81.2 | 4.19 m | |
| 3 | 88.6 | 4.93 m # | |
| 4 | 70.5 or 70.6 or 70.7 | 4.09 m | |
| 5 | 78.0–78.5 ¥ | 3.88 m | |
| 6 | 62.2–63.4 ¥ | 4.19 m or 4.22 m, 4.33 m | |
| Glc III | 1 | 104.8 | 5.48 d (7.4) |
| 2 | 75.9 or 76.0 | 4.11 m | |
| 3 | 78.7–79.0 ¥ | 4.13 m | |
| 4 | 74.3 | 3.87 m | |
| 5 | 76.5 | 3.97 m | |
| 6 | 72.1 | 4.44 m, 4.50 m | |
| Glc IV | 1 | 104.3 | 5.40 d (8.0) |
| 2 | 75.9 or 76.0 | 3.97 m | |
| 3 | 78.7–79.0 ¥ | 4.47 m | |
| 4 | 71.5 or 71.6 | 4.13 m or 4.15 m | |
| 5 | 78.0–78.5 ¥ | 3.97 m | |
| 6 | 62.2–63.4 ¥ | 4.19 m or 4.22 m, 4.32 m | |
| Glc VII | 1 | 100.6 | 5.76 d (3.5) |
| 2 | 81.4 | 4.13 m | |
| 3 | 84.7 | 4.60 m | |
| 4 | 70.5 or 70.6 or 70.7 | 4.16 m | |
| 5 | 74.0 | 4.41 m | |
| 6 | 62.2–63.4 ¥ | 4.36 m, ~4.5 m | |
| Glc VIII | 1 | 106.5 | 5.10 d (7.7) |
| 2 | 75.7 | 4.06 m | |
| 3 | 78.7–79.0 ¥ | 4.17 m | |
| 4 | 72.1 or 74.0 | 4.10 m or 4.16 m | |
| 5 | 78.7–79.0 ¥ | 3.81 m or 3.85 m | |
| 6 | 62.2–63.4 ¥ | ~4.2 m to ~4.5 m | |
| Glc IX | 1 | 105.4 | 5.06 d (7.8) |
| 2 | 76.1 | 3.98 m | |
| 3 | 78.7–79.0 ¥ | 4.13 m | |
| 4 | 72.1 or 74.0 | 4.10 m or 4.16 m | |
| 5 | 78.7–79.0 ¥ | 3.81 m or 3.85 m | |
| 6 | 62.2–63.4 ¥ | ~4.2 m to ~4.5 m |
¥ Chemical shifts could not be unequivocally assigned due to very close chemical shifts or overlapping resonances. # Proton resonance obscured by the water resonance, assignment based on 1D Total Correlation Spectroscopy (TOCSY) and 2D NMR data.