| Literature DB >> 29875351 |
Qihao Wu1, Robert W Deering2, Gaiyun Zhang3, Bixia Wang4, Xin Li5, Jiadong Sun6, Jianwei Chen7, Huawei Zhang8, David C Rowley9, Hong Wang10.
Abstract
Marine actinobacteria continue to be a rich source for the discovery of structurally diverse secondary metabolites. Here we present a new hydroxymate siderophore produced by Amycolatopsis albispora, a recently described species of this less explored actinomycete genus. Strain WP1T was isolated from sediments collected at -2945 m in the Indian Ocean. The new siderophore, designated albisporachelin, was isolated from iron depleted culture broths and the structure was established by 1D and 2D NMR and MS/MS experiments, and application of a modified Marfey's method. Albisporachelin is composed of one N-methylated-formylated/hydroxylated l-ornithine (N-Me-fh-l-Orn), one l-serine (l-Ser), one formylated/hydroxylated l-ornithine (fh-l-Orn) and a cyclo-N-methylated-hydroxylated l-ornithine (cyclo-N-Me-h-l-Orn).Entities:
Keywords: Amycolatopsis; deep ocean sediment; siderophore
Mesh:
Substances:
Year: 2018 PMID: 29875351 PMCID: PMC6024995 DOI: 10.3390/md16060199
Source DB: PubMed Journal: Mar Drugs ISSN: 1660-3397 Impact factor: 5.118
Figure 1Siderophore detection of A. albispora WP1T by liquid CAS method. A: Liquid CAS detection of A. albispora WP1T cultivated in siderophore producing media with Fe3+; B: Liquid CAS detection of A. albispora WP1T cultivated in siderophore producing media without Fe3+; C: Liquid CAS detection of siderophore producing media.
Figure 2Siderophore detection of A. albispora WP1T by CAS double-layer agar diffusion method. Red haloes occur when siderophore was produced by the tested strains.
Figure 3Chemical structure of albisporachelin (1).
1H-(500 MHz) and 13C-NMR (125 MHz) data of 1 in DMSO-d6 (δ in ppm, J in Hz).
| Residue | Position | δC, Type | δH (J in Hz) | 1H-1H COSY | HMBC |
|---|---|---|---|---|---|
| C-1 | 167.1, qC | - | - | - | |
| C-2 | 60.2, CH | 3.86 m | NH-1, H-3 | C-1, C-3, C-4 | |
| C-3 | 32.8, CH2 | 1.54, 1.72 m | H-2, H-4 | C-1, C-2, C-4, C-5 | |
| C-4 | 22.6, CH2 | 1.62 m | H-3, H-5 | C-2, C-3, C-5 | |
| C-5 | 48.7, CH2 | 3.43 m | H-4 | C-3, C-4, C-6 | |
| C-6 | 157.2, CH | 7.90 d (8.5) | - | - | |
| C-7 | 31.3, CH3 | 2.48 s | - | C-2 | |
| NH-1 | - | 8.87 s | - | - | |
| Ser | C-8 | 168.7, qC | - | - | - |
| C-9 | 52.8, CH | 5.04 m | H-10 | C-1, C-8, C-10 | |
| C-10 | 60.6, CH2 | 3.56, 3.75 m | H-9 | C-8, C-9 | |
| NH-2 | - | 8.79 d (7.6) | H-9 | C-1 | |
| Hf-Orn | C-11 | 166.0, qC | - | - | - |
| C-12 | 54.3, CH | 3.75 m | NH-3, H-13 | C-8, C-11 | |
| C-13 | 32.4, CH2 | 1.54, 1.72 m | H-12, H-14 | C-11, C-12, C-15 | |
| C-14 | 26.5, CH2 | 1.72 m | H-13, H-15 | C-12, C-13, C-15 | |
| C-15 | 45.5, CH2 | 3.43 m | H-14 | C-13, C-14, C-16 | |
| C-16 | 161.8, CH | 8.24 d (6.9) | - | C-15 | |
| NH-3 | - | 8.37 d (17.5) | - | - | |
| Cyclic | C-17 | 166.6, qC | - | - | - |
| C-18 | 60.4, CH | 3.85 m | H-19 | C-17, C-19, C-20, C-22 | |
| C-19 | 28.8, CH2 | 1.63, 1.81 m | H-18, H-20 | C-17, C-18, C-20 | |
| C-20 | 21.9, CH2 | 1.63 m | H-19, H-21 | C-18, C-19, C-21 | |
| C-21 | 47.1, CH2 | 3.73, 3.37 m | H-20 | C-17, C-19, C-20 | |
| C-22 | 31.9, CH3 | 2.81 s | - | C-11, C-18 |
Figure 4Key 1H-1H COSY, TOCSY and selected HMBC correlations of albisporachelin (1).
Figure 5Product ions observed during MS2 fragmentation experiments and assignment of the molecular ion peak.