| Literature DB >> 24840716 |
Guoping Xia1, Jia Li2, Hanxiang Li3, Yuhua Long4, Shao'e Lin5, Yongjun Lu6, Lei He7, Yongcheng Lin8, Lan Liu9, Zhigang She10.
Abstract
A new alterporriol-type anthranoid dimer, alterporriol S (1), along with seven known anthraquinone derivatives, (+)-aS-alterporriol C (2), hydroxybostrycin (3), halorosellinia A (4), tetrahydrobostrycin (5), 9α-hydroxydihydrodesoxybostrycin (6), austrocortinin (7) and 6-methylquinizarin (8), were isolated from the culture broth of the mangrove fungus, Alternaria sp. (SK11), from the South China Sea. Their structures and the relative configurations were elucidated using comprehensive spectroscopic methods, including 1D and 2D NMR spectra. The absolute configurations of 1 and the axial configuration of 2 were defined by experimental and theoretical ECD spectroscopy. 1 was identified as the first member of alterporriols consisting of a unique C-10-C-2' linkage. Atropisomer 2 exhibited strong inhibitory activity against Mycobacterium tuberculosis protein tyrosine phosphatase B (MptpB) with an IC₅₀ value 8.70 μM.Entities:
Mesh:
Substances:
Year: 2014 PMID: 24840716 PMCID: PMC4052326 DOI: 10.3390/md12052953
Source DB: PubMed Journal: Mar Drugs ISSN: 1660-3397 Impact factor: 5.118
Scheme 1Structures of 1–8 isolated from Alternaria sp. (SK11).
NMR spectroscopic data (400 MHz, DMSO-d6) for 1 .
| Position | δC | δH | HMBC |
|---|---|---|---|
| 1 | 156.9, C | ||
| 2 | 99.5, CH | 6.73, s | 1, 3, 4, 9a |
| 3 | 157.0, CH | ||
| 4 | 136.5, C | ||
| 4a | 125.5,C | ||
| 5ax 5eq | 42.0, CH2 | 1.37, dd (12.8, 13.5); 1.65, dd (12.8, 3.8) | 10, 10a |
| 6 | 71.7, C | ||
| 7 | 75.6, CH | 3.20, dd (10.0, 4.9) | 8 |
| 8 | 73.1, CH | 3.45, ddd (10.0, 4.9, 4.6) | 7 |
| 8a | 46.0, CH | 2.99, ddd (4.6, 4.1, 1.2) | 5, 7, 8, 9, 10 |
| 9 | 206.4, C | ||
| 9a | 110.2, C | ||
| 10 | 37.1, C | 4.60, brs | 4, 4a, 5, 8a, 9a, 10a, 2′, 3′, 4′ |
| 10a | 35.1, C | 2.64, m | 11 |
| 11 | 26.7, CH3 | 1.08, s | 5, 6, 7 |
| 12 | 56.7, CH3 | 3.89, s | 3 |
| 1-OH | 12.46, s | 1, 2, 9a | |
| 4-OH | 8.57, s | 3, 4, 4a | |
| 6-OH | 4.06, s | ||
| 7-OH | 4.62, d (4.9) | ||
| 8-OH | 4.33, d (4.9) | ||
| 1′ | 161.8, C | ||
| 2′ | 146.3, C | ||
| 3′ | 127.6, CH | 6.34, s | 10, 1′, 4a′ |
| 4′ | 162.5, C | ||
| 4a′ | 110.5, C | ||
| 5′ax 5′eq | 30.2, CH2 | 2.65, m 2.80, dd (14.4, 5.0) | 6′, 10′ |
| 6′ | 70.6, CH | 3.61, dt (11.8, 5.0) | 11′ |
| 7′ | 69.4, C | ||
| 8′ | 35.9, CH2 | 2.74, d (14.1) 2.58, m | 7′, 8a′, 11′ |
| 8a′ | 142.3, C | ||
| 9′ | 180.9, C | ||
| 9a′ | 111.5, C | ||
| 10′ | 181.9, C | ||
| 10a′ | 142.8,C | ||
| 11′ | 25.7, CH3 | 1.18, s | 6′, 8′ |
| 1′-OH | 13.17, s | 1′, 2′, 9′ | |
| 4′-OH | 12.42, s | 3′, 4′, 4a′,10′ | |
| 6′-OH | 4.82, d (5.0) | ||
| 7′-OH | 4.49, s |
δ in ppm, J in Hz, TMS as the internal standard; HMBC correlations, optimized for 6 Hz, were started from the proton to the indicated carbon; signal partially obscured.
Figure 11H–1H COSY, key HMBC (a) and meaningful NOESY; (b,c) correlations of 1.
Figure 2Experimental and calculated ECD spectra of 1 *.
Figure 3Calculated ECD spectra of 10R7′S and 10R7′S diastereomers.
Figure 4Calculated ECD spectra of 1′.
Figure 51H–1H COSY, key HMBC (a) and meaningful NOESY; (b) correlations of 2.
NMR spectroscopic data (400 MHz, DMSO-d6) for 2 .
| Position | δC | δH | HMBC |
|---|---|---|---|
| 1 | 125.5, C | ||
| 2 | 159.1, C | ||
| 3 | 131.0, C | ||
| 4 | 129.7, CH | 8.05, s | 2, 3, 10 |
| 4a | 131.6, C | ||
| 5 | 106.6, CH | 7.16, d (2.3) | 6, 8a, 9, 10, 10a |
| 6 | 165.6, C | ||
| 7 | 106.9, C | 6.76, d (2.2) | 5, 6, 8a, 9 |
| 8 | 164.5, C | ||
| 8a | 110.3, C | ||
| 9 | 187.6, C | ||
| 9a | 106.1, C | ||
| 10 | 180.8, C | ||
| 10a | 134.5, C | ||
| 11 | 17.3, CH3 | 2.31, s | 2, 3, 9 |
| 12 | 56.8, CH3 | 3.89, s | 6 |
| 2-OH | 9.50, brs | ||
| 8-OH | 12.48, s | 7, 8, 8a, 9 | |
| 1′ | 163.9, C | ||
| 2′ | 126.0, C | ||
| 3′ | 164.2, C | ||
| 4′ | 104.1, CH | 6.96, s | 3′, 4a′, 9a′ |
| 4a′ | 123.0, C | ||
| 5′ | 68.4, CH | 4.05, s | 6′, 8a′, 10′,10a′, 12′ |
| 6′ | 73.0, C | ||
| 7′ | 68.2, CH | 3.57, dd (5.6, 6.6) | 8′ |
| 8′ | 73.8, CH | 4.48, m | 7′, 8a′, 10a′ |
| 8a′ | 142.3, C | ||
| 9′ | 189.1, C | ||
| 9a′ | 109.7, C | ||
| 10′ | 184.4, C | ||
| 10a′ | 143.6, C | ||
| 11′ | 56.3, CH3 | 3.71, s | 3′ |
| 12′ | 22.3, CH3 | 1.12, s | 5′, 6′ |
| 1′-OH | 13.09, s | 1′, 4′, 9a′ | |
| 5′-OH | 5.75, brs | ||
| 6′-OH | 4.38, s | 5′, 6′, 7′ | |
| 7′-OH | 4.86, d (5.6) | ||
| 8′-OH | 5.05, brs | 6′, 7′, 8a′ |
δ in ppm, J in Hz, TMS as the internal standard; HMBC correlations, optimized for 6 Hz, were started from the proton to the indicated carbon; signal partially obscured.
Figure 6Experimental and calculated ECD spectra of 2 *.
Mycobacterium tuberculosis protein tyrosine phosphatase B (MptpB) assay for isolated Compounds 1–8.
| Compound | IC50 (μM) |
|---|---|
|
| 64.70 |
|
| 8.70 |
|
| >100.00 |
|
| 0.05 |