| Literature DB >> 25056631 |
Alonso Pardo-Vargas1, Ingrid de Barcelos Oliveira2, Paulo Roberto Soares Stephens2, Claudio Cesar Cirne-Santos2, Izabel Christina Nunes de Palmer Paixão3, Freddy Alejandro Ramos4, Carlos Jiménez5, Jaime Rodríguez6, Jackson Antonio Lamounier Camargos Resende7, Valeria Laneuville Teixeira8, Leonardo Castellanos9.
Abstract
The marine brown alga Dictyota pfaffii from Atol das Rocas, in Northeast Brazil is a rich source of dolabellane diterpene, which has the potential to be used in future antiviral drugs by inhibiting reverse transcriptase (RT) of HIV-1. Reexamination of the minor diterpene constituents yielded three new dolabellane diterpenes, (1R*,2E,4R*,7S,10S*,11S*,12R*)10,18-diacetoxy-7-hydroxy-2,8(17)-dolabelladiene (1), (1R*,2E,4R*,7R*,10S*,11S*,12R*)10,18-diacetoxy-7-hydroxy-2,8(17)-dolabelladiene (2), (1R*,2E,4R*,8E,10S*,11S,12R*)10,18-diacetoxy-7-hydroxy-2,8-dolabelladiene (3), termed dolabelladienols A-C (1-3) respectively, in addition to the known dolabellane diterpenes (4-6). The elucidation of the compounds 1-3 was assigned by 1D and 2D NMR, MS, optical rotation and molecular modeling, along with the relative configuration of compound 4 and the absolute configuration of 5 by X-ray diffraction. The potent anti-HIV-1 activities displayed by compounds 1 and 2 (IC50 = 2.9 and 4.1 μM), which were more active than even the known dolabelladienetriol 4, and the low cytotoxic activity against MT-2 lymphocyte tumor cells indicated that these compounds are promising anti-HIV-1 agents.Entities:
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Year: 2014 PMID: 25056631 PMCID: PMC4113826 DOI: 10.3390/md12074247
Source DB: PubMed Journal: Mar Drugs ISSN: 1660-3397 Impact factor: 5.118
Figure 1Structure of the new dolabellane diterpenoids dolabelladienols A–C (1–3), along with the known dolabelladienetriol (4–6) isolated from D. pfaffii.
13C and 1H NMR data (500 MHz in CDCl3) of dolabelladienols A–C (1–3) (δ in ppm, J in Hz).
| Position | 1 | 2 | 3 | |||
|---|---|---|---|---|---|---|
| δC | δH | δC | δH | δC | δH | |
| 1 | 48.4 | - | 48.1 | - | 48.9 | - |
| 2 | 137.5 | 5.17 (d, 16.4) | 138.9 | 5.24 (d, 16.4) | 136.9 | 5.23 (dd, 16.4, 0.7) |
| 3 | 133.6 | 5.66 (dd, 16.4, 7.2) | 134.5 | 5.53 (dd, 16.4, 8.5) | 134.1 | 5.70 (dd, 16.4, 6.9) |
| 4 | 34.8 | 2.20 (m) | 34.7 | 2.04 (m) | 34.9 | 2.39 (ddd, 13.9, 7.7, 3.3) |
| 5 | 32.0 | 1.58 (m) 1.63 (m) | 33.2 | 1.76 (dd, 11.2, 2.3) 1.08 (dd, 11.2, 4.9) | 33.5 | 2.34 (m) 1.71 (m) |
| 6 | 32.6 | 1.62 (m) 1.90 (m) | 33.3 | 1.85 (dd, 9.0, 4.9) 1.64 (m) | 30.7 | 1.45 (m) 1.66 (m) |
| 7 | 70.2 | 4.37 (dd, 8.4, 3.5) | 76.7 | 3.95 (dd, 11.4, 4.9) | 69.0 | 5.08 (t, 6.6) |
| 8 | 146.2 | - | 144.8 | - | 140.1 | - |
| 9 | 41.0 | 2.43 (dd, 13.2, 4.7) 2.46 (dd, 13.2, 8.9) | 36.5 | 2.65 (dd, 13.8, 10.1) 2.50 (br d, 13.8) | 125.8 | 5.31 (d, 10.4) |
| 10 | 68.6 | 4.91 (ddd, 8.9, 4.7, 2.4) | 70.4 | 4.88 (ddd, 10.1, 3.2, 2.1) | 67.9 | 5.58 (dd, 10.4, 2.3) |
| 11 | 51.1 | 1.84 (dd, 10.8, 2.4) | 50.6 | 1.94 (dd, 10.5, 3.2) | 53.3 | 1.76 (dd, 10.1, 2.1) |
| 12 | 44.2 | 2.95 (td, 10.8, 4.7) | 44.2 | 3.06 (td, 10.5, 4.9) | 44.3 | 2.98 (m) |
| 13 | 26.4 | 1.95 (m) 1.45 (m) | 26.5 | 1.96 (m) 1.48 (m) | 26.2 | 1.95 (m), 1.46 (m) |
| 14 | 38.9 | 1.46 (m) 1.39 (m) | 38.7 | 1.51 (m) 1.47 (m) | 39.2 | 1.49 (m) 1.39 (m) |
| 15 | 16.8 | 0.83 (s) | 18.4 | 0.83 (s) | 16.9 | 0.93 (s) |
| 16 | 22.2 | 0.97 (d 6.9 ) | 21.1 | 1.00 (d, 6.7) | 19.8 | 0.96 (d, 6.9) |
| 17 | 113.5 | 5.12 (brs) 4.99 (brs) | 117.0 | 5.04 (brs) 4.89 (brs) | 17.0 | 1.66 (d, 1.4) |
| 18 | 84.8 | - | 84.8 | - | 84.9 | - |
| 19 | 23.4 | 1.42 (s) | 23.2 | 1.45 (s) | 26.0 | 1.59 (s) |
| 20 | 26.4 | 1.60 (s) | 26.6 | 1.61 (s) | 23.6 | 1.43 (s) |
| 21 | 170.5 | - | 171.5 | - | 170.2 | - |
| 22 | 21.0 | 2.04 (s) | 21.0 | 2.05 (s) | 23.0 | 1.97 (s) |
| 23 | 170.1 | - | 170.0 | - | 170.8 | - |
| 24 | 23.0 | 1.93 (s) | 22.9 | 1.92 (s) | 21.1 | 2.02 (s) |
Figure 21H-1H COSY correlations (bold lines) and key H→C HMBC correlations (arrows) for compounds (a) 1–2 and (b) 3.
Figure 3Key NOE Correlations for the main conformers found for compounds 1 (a) and 2 (b).
Figure 4X-ray crystal structure of the compound 4 and 5.