| Literature DB >> 35447928 |
Xinya Xu1, Yanhui Tan2, Chenghai Gao1, Kai Liu1, Zhenzhou Tang1, Chunju Lu1, Haiyan Li1, Xiaoyong Zhang3, Yonghong Liu1.
Abstract
Seven rare C3-C6 reduced 3-acyl tetramic acid derivatives, lecanicilliumins A-G (1-7), along with the known analogue cladosporiumin D (8), were obtained from the extract of the deep-sea-derived fungus Lecanicillium fusisporum GXIMD00542 within the family Clavipitacae. Their structures were elucidated by extensive spectroscopic data analysis, quantum chemistry calculations and chemical reaction. Compounds 1, 2, 5-7 exhibited moderate anti-inflammatory activity against NF-κB production using lipopolysaccharide (LPS) induced RAW264.7 cells with EC50 values range of 18.49-30.19 μM.Entities:
Keywords: Lecanicillium fusisporum; anti-inflammatory activity; clavipitacae; deep-sea fungus; tetramic acid derivatives
Mesh:
Substances:
Year: 2022 PMID: 35447928 PMCID: PMC9031249 DOI: 10.3390/md20040255
Source DB: PubMed Journal: Mar Drugs ISSN: 1660-3397 Impact factor: 6.085
Figure 1The interconverting internal tautomers of 3-acyl tetramic acid [5].
Figure 2The chemical structures of compounds 1–8.
1H NMR data (600 MHz) for compounds 1, 2 and 7 in DMSO-d6 (δ in ppm, J in Hz).
| No. | 1 | 2 | 7 |
|---|---|---|---|
| 6 | 4.30, br s | 4.23, m | 2.41, dd, (14.1, 7.5) |
| 7 | 5.97, d, (10.4) | 5.95, m | 5.17, dt, (10.9, 7.3) |
| 8 | 5.82, dtd, (10.2, 2.1, 5.7) | 5.79, dtd, (9.9, 4.3, 1.9) | 5.49, dt, (10.9, 7.3) |
| 9 | 1.90, m, H-9α | 1.93, m, | 1.94–2.04, ovp. |
| 1.65, m, H-9β | 1.74, ovp. a, | ||
| 10 | 3.52, ddd, (15.6, 6.1, 4.6) | 3.52, dtt, (12.3, 6.1, 3.5) | 3.52, m |
| 11 | 0.99, d, (6.1) | 0.99, d, (6.1) | 0.98, d, (6.2) |
| 13 | 1.77, s | 1.77, s | 1.78, s |
| 14 | 2.02, s | 2.07, s | 2.06, s |
| N | 10.33, br s | 10.19, br s | 10.34, br s |
| O | 6.32, br s | 6.35, br s | 6.14, br s |
| O | - | - | 4.44, d, (4.5) |
a overlapped.
13C NMR data (150 MHz) for compounds 1–7 in DMSO-d6 (δ in ppm).
| No. | 1 | 2 | 3 | 4 | 5 | 6 | 7 |
|---|---|---|---|---|---|---|---|
| 2 | 171.45, C | 169.7, C | 171.35, C | 171.89, C | 171.51, C | 171.53, C | 171.91, C |
| 3 | 74.31, C | 74.22, C | 75.14, C | 75.85, C | 75.29, C | 75.55, C | 73.96, C |
| 4 | 197.12, C | 199.36, C | 199.04, C | 199.64, C | 199.59, C | 199.65, C | 199.38, C |
| 5 | 120.24, C | 120.52, C | 122.3, C | 122.07, C | 122.44, C | 122.28, C | 122.47, C |
| 6 | 76.97, CH | 77.68, CH | 37.73, CH | 34.26, CH | 39.6, CH | 35.23, CH | 33.46, CH2 |
| 7 | 125.37, CH | 125.44, CH | 97.81, CH | 96.65, CH | 30.31, CH2 | 28.86, CH2 | 121.66, CH |
| 8 | 124.85, CH | 124.85, CH | 145.33, CH | 145.25, CH | 101.66, CH | 97.05, CH | 130.96, CH |
| 9 | 32.02, CH2 | 32.02, CH2 | 71.2, CH | 68.28, CH | 69.93, CH | 63.82, CH | 36.74, CH2 |
| 10 | 69.62, CH | 69.73, CH | 29.7, CH2 | 27.95, CH2 | 31.72, CH2 | 31.85, CH2 | 65.81, CH |
| 11 | 21.4, CH3 | 21.35, CH3 | 21.17, CH3 | 20.63, CH3 | 21.45, CH3 | 21.6, CH3 | 23.11, CH3 |
| 12 | 128.96, C | 129.13, C | 128.57, C | 128.6, C | 128.5, C | 128.44, C | 128.41, C |
| 13 | 20.57, CH3 | 20.57, CH3 | 20.71, CH3 | 19.91, CH3 | 20.69, CH3 | 20.66, CH3 | 20.69, CH3 |
| 14 | 18.39, CH3 | 18.39, CH3 | 18.49, CH3 | 18.44, CH3 | 18.46, CH3 | 18.43, CH3 | 18.46, CH3 |
| 15 | - | - | - | - | 55.32, CH3 | 53.67, CH3 | - |
Figure 3(A) Key 1H-1H COSY and HMBC correlations for compounds 1–7. (B) Key NOESY correlations for compounds 1–7. (C) The Δδ (δS−δR) values for MTPA esters of 7.
Figure 4X-ray ORTEP drawing of compound 1. The crystal structure was deposited at the Cambridge Crystallographic Data Centre with number of CCDC 2092073.
Figure 5Comparison of calculated ECD spectra of (3S,6S,10R)-2a (red), (3S,6R,10S)-2b (gray) in MeOH and experimental CD (black). σ = 0.3 eV, UV shift = 7 nm.
1H NMR data (600 MHz) for compounds 3–6 in DMSO-d6 (δ in ppm, J in Hz).
| No. | 3 | 4 | 5 | 6 |
|---|---|---|---|---|
| 6 | 2.64, ddt, (11.4, 5.8, 2.0) | 2.45, ddd, (10.5, 4.7, 2.4) | 1.98, tt, (12.5, 3.7) | 2.17, tt, (12.8, 3.5) |
| 7 | 4.51, d, (6.4) | 4.44, dd, (6.4, 3.4) | 1.59, dt, (12.5, 2.1) | 1.56, ovp. |
| 1.05, td, (12.5, 9.5) | 1.05, ovp. | |||
| 8 | 6.35, dd, (6.4, 2.3) | 6.38, dd, (6.4, 2.2) | 4.23, dd, (9.5, 2.1) | 4.66, d, 2.6 |
| 9 | 3.85, dqd, (12.6, 6.3, 1.7) | 3.91, ddd, (11.5, 6.3, 3.2) | 3.41, dqd, (12.3, 6.1, 1.9) | 3.63, dqd, (12.2, 6.3, 2.1) |
| 10 | 1.78, ovp. a | 2.12, ddd, 1(4.2, 7.0, 3.5) | 1.52, m | 1.56, ovp. |
| 1.53, dt, (13.2, 11.4) | 1.45, ddd, (14.2, 7.0, 3.5) | 0.97, td, (12.7, 11.0) | 1.05, ovp. | |
| 11 | 1.18, d, (6.3) | 1.13, d, (6.3) | 1.11, d, (6.1) | 1.05, d, (6.3) |
| 13 | 1.81, s | 1.78, s | 1.80 s | 1.79, s |
| 14 | 2.09, s | 2.05, s | 2.08, s | 2.07, s |
| 15 | - | - | 3.30, s | 3.19, s |
| N | 10.37, br s | 10.41, br s | 10.4, br s | 10.37, br s |
| O | 6.09, br s | 6.07, br s | 6.04, br s | 5.97, br s |
a overlapped.
Figure 6Comparison of calculated ECD spectra of (3S,6S,9S)-4a (red), (3S,6R,9R)-4b (gray), (3R,6R,9R)-4c (dashed gray) and (3R,6S,9S)-4d (dashed orange) and experimental CD (black). σ = 0.3 eV; UV shift = 7 nm.