| Literature DB >> 35520149 |
Yue-Lan Li1, Rong-Xiu Zhu2, Gang Li3, Ning-Ning Wang1, Chun-Yu Liu1, Zun-Tian Zhao4, Hong-Xiang Lou1.
Abstract
The isolation of the cytotoxic fractions from the endolichenic fungus Ophiosphaerella korrae yielded six new metabolites, including five polyketides (ophiofuranones A (1) and B (2), with unusual furopyran-3,4-dione-fused heterocyclic skeletons, ophiochromanone (3), ophiolactone (4), and ophioisocoumarin (5)), one sesquiterpenoid ophiokorrin (10), and nine known compounds. Their structures were established on the basis of the analysis of HRESIMS and NMR spectroscopic data. ECD calculations, GIAO NMR shift calculations and single-crystal X-ray diffraction were employed for the stereo-structure determination. A plausible biogenetic pathway for the ophiofuranones A (1) and B (2) was proposed. The cytotoxic assay suggested that the five known perylenequinones mainly contributed to the cytoxicity of the extract. Further phytotoxic studies indicated that ophiokorrin inhibited root elongation in the germination of Arabidopsis thaliana with an IC50 value of 18.06 μg mL-1. This journal is © The Royal Society of Chemistry.Entities:
Year: 2019 PMID: 35520149 PMCID: PMC9060614 DOI: 10.1039/c8ra10329a
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 3.361
Fig. 1Structures of the isolated compounds 1–15.
1H and 13C NMR data for compounds 1 and 2 in DMSO-d6
| Position | 1 | 2 | ||
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| 2 | 93.2, C | 93.2, C | ||
| 3 | 196.5, C | 196.4, C | ||
| 3a | 102.1, C | 102.0, C | ||
| 4 | 159.0, C | 159.1, C | ||
| 6 | 4.61 q (6.4) | 80.0, CH | 4.62 q (6.6) | 80.0, CH |
| 7 | 66.8, C | 66.8, C | ||
| 7a | 195.2, C | 195.0, C | ||
| 8 | 1.56 s | 23.4, CH3 | 1.55 s | 24.1, CH3 |
| 9 | 1.32 d (6.4) | 12.8, CH3 | 1.32 d (6.6) | 12.8, CH3 |
| 10 | 1.36 s | 18.4, CH3 | 1.32 s | 18.5, CH3 |
| 1′ | 5.58 s | 126.4, CH | 5.46 s | 124.1, CH |
| 2′ | 140.1, C | 133.3, C | ||
| 3′ | 6.41 dd (17.2, 10.8) | 140.2, CH | 6.77 dd (17.4, 10.8) | 138.7, CH |
| 4′a | 5.16 d (10.8) | 115.5, CH2 | 5.33 dt (10.8, 1.2) | 118.5, CH2 |
| 4′b | 5.35 d (17.2) | 5.40 d (17.4) | ||
| 5′ | 1.82 s | 12.9, CH3 | 1.85 d (1.2) | 19.5, CH3 |
| OH-7 | 6.40 s | 6.39 s | ||
1H and 13C NMR data recorded at 400 and 100 MHz.
1H and 13C NMR data recorded at 600 and 150 MHz, respectively.
Fig. 2Key HMBC (red arrows) and 1H–1H COSY (bold black lines) of 1, 3–5 and 10.
Fig. 3Key NOESY (dash arrows) correlations of 1–4 and 10.
Fig. 4Experimental and calculated ECD spectra of 1 (A), 2 (B) and 4 (C).
1H and 13C NMR data for compounds 3 and 4 in DMSO-d6
| Position | 3 | 4 | ||
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| 2 | 4.25 dq (11.9, 6.6) | 77.8, CH | 4.31 dq (10.2, 6.6) | 78.4, CH |
| 3 | 2.63 dq (11.9, 6.6) | 47.0, CH | 1.56 tq (10.2, 6.6) | 38.7, CH |
| 4 | 196.1, C | 5.14 d (10.2) | 77.5, CH | |
| 5 | 118.6, C | 134.5, C | ||
| 6 | 130.9, C | 120.5, C | ||
| 7 | 131.2, C | 128.6, C | ||
| 8 | 7.30 s | 137.8, CH | 7.08 s | 133.8, CH |
| 9 | 127.0, C | 128.7, C | ||
| 10 | 158.0, C | 147.5, C | ||
| 11 | 1.43 d (6.6) | 19.5, CH3 | 1.40 d (6.6) | 18.7, CH3 |
| 12 | 1.06 d (6.6) | 10.4, CH3 | 1.15 d (6.6) | 13.8, CH3 |
| 13 | 5.37 d (11.2) | 60.2, CH2 | 169.6, C | |
| 5.33 d (11.2) | ||||
| 14 | 2.23 s | 18.1, CH3 | 2.40 s | 15.5, CH3 |
| 15 | 2.16 s | 15.5, CH3 | 2.18 s | 14.7, CH3 |
| OAc-13 | 170.3, C | |||
| 1.97 s | 20.6, CH3 | |||
1H and 13C NMR data recorded at 600 and 150 MHz.
Fig. 5The X-ray crystallographic structures of 3, 5, 9 and 10.
1H and 13C NMR data for compounds 5 and 10
| Position | 5 | 10 | ||
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| 1 | 168.0, C | |||
| 2 | 167.6, C | 5.78 s | 127.7, CH | |
| 3 | 98.8, C | 197.4, C | ||
| 4 | 163.3, C | 2.22 m | 41.6, CH2 | |
| 5 | 6.38 s | 101.6, CH | 2.18 m | 33.1, CH |
| 6 | 164.4, C | 41.7, C | ||
| 7 | 113.8, C | 1.65 m | 33.7, CH2 | |
| 8 | 144.3, C | 2.13 m,1.76 m | 34.8, CH2 | |
| 9 | 4.06 q (7.2) | 35.3, CH | 158.7, C | |
| 10 | 158.6, C | 5.63 s | 116.0, CH | |
| 11 | 4.71, 4.72 (each br s) | 95.8, CH2 | 11.89 s | 167.4, COOH |
| 12 | 2.11 s | 10.0, CH3 | 2.09 s | 18.3, CH3 |
| 13 | 1.36 d (7.2) | 22.4, CH3 | 1.91 s | 19.7, CH3 |
| 14 | 0.90 d (6.4) | 15.1 | ||
| 15 | 1.00 s | 19.1 | ||
| OH-4 | 10.89 s | |||
1H and 13C NMR data recorded at 600 and 150 MHz in acetone-d6.
1H and 13C NMR data recorded at 400 and 100 MHz in DMSO-d6, respectively.
Scheme 1A proposed biogenetic pathway for compounds 1 and 2.
Fig. 6The root elongation of A. thaliana on Petri dishes with different doses of compound 10.