| Literature DB >> 31936318 |
Fleurdeliz Maglangit1,2, Qing Fang1, Kwaku Kyeremeh3, Jeremy M Sternberg4, Rainer Ebel1, Hai Deng1.
Abstract
Whole-genome sequence data of the genus Streptomyces have shown a far greater chemical diversity of metabolites than what have been discovered under typical laboratory fermentation conditions. In our previous natural product discovery efforts on Streptomyces sp. MA37, a bacterium isolated from the rhizosphere soil sample in Legon, Ghana, we discovered a handful of specialised metabolites from this talented strain. However, analysis of the draft genome of MA37 suggested that most of the encoded biosynthetic gene clusters (BGCs) remained cryptic or silent, and only a small fraction of BGCs for the production of specialised metabolites were expressed when cultured in our laboratory conditions. In order to induce the expression of the seemingly silent BGCs, we have carried out a co-culture experiment by growing the MA37 strain with the Gram-negative bacterium Pseudomonas sp. in a co-culture chamber that allows co-fermentation of two microorganisms with no direct contact but allows exchange of nutrients, metabolites, and other chemical cues. This co-culture approach led to the upregulation of several metabolites that were not previously observed in the monocultures of each strain. Moreover, the co-culture induced the expression of the cryptic indole alkaloid BGC in MA37 and led to the characterization of the known indolocarbazole alkaloid, BE-13793C 1. Neither bacterium produced compound 1 when cultured alone. The structure of 1 was elucidated by Nuclear Magnetic Resonance (NMR), mass spectrometry analyses and comparison of experimental with literature data. A putative biosynthetic pathway of 1 was proposed. Furthermore, BE-13793C 1 showed strong anti-proliferative activity against HT-29 (ATCC HTB-38) cells but no toxic effect to normal lung (ATCC CCL-171) cells. To the best of our knowledge, this is the first report for the activity of 1 against HT-29. No significant antimicrobial and anti-trypanosomal activities for 1 were observed. This research provides a solid foundation for the fact that a co-culture approach paves the way for increasing the chemical diversity of strain MA37. Further characterization of other upregulated metabolites in this strain is currently ongoing in our laboratory.Entities:
Keywords: Pseudomonas sp.; Streptomyces sp. MA37; alkaloid; co-culture; cryptic genes; indolocarbazole; silent genes
Year: 2020 PMID: 31936318 PMCID: PMC7024260 DOI: 10.3390/molecules25020256
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1(A). Assembled co-culture device enabling separation of two independent cultures with a 0.22 μm membrane filter and joined by a holding clamp. (B). Co-culture of Streptomyces sp. MA37 and Pseudomonas sp. prior to incubation.
Figure 2(A) HPLC traces recorded at λ250 nm of the extracts (10 µL injection, 15.0 mg/mL in methanol) of Streptomyces sp. MA37 cultivated with Pseudomonas sp., showing metabolites that are upregulated (*) and expressed only in co-cultures (∆). (B) Streptomyces sp. MA37 monoculture, and (C) Pseudomonas sp. monoculture.
Figure 3Structure of BE-13793C 1 with 1H-1H Correlation Spectroscopy (COSY) (―) and key Heteronuclear Multiple Bond Correlations (HMBC) (→).
1H and 13C-NMR of BE-13793C 1 at 600 MHz and 298 K.
| No. | 1H | 13C a | |||
|---|---|---|---|---|---|
| α (ppm) | mult. | J (Hz) | α (ppm) | Type | |
| 1 | 10.63 (OH) | s | 143.3 b | C | |
| 2 | 6.98 | d | 8.2 | 111.4 | CH |
| 3 | 7.13 | tr | 8.2 | 121.3 | CH |
| 4 | 8.41 | d | 7.8 | 115.5 | CH |
| 4a | - | - | - | 123.0 | C |
| 4b | - | - | - | 115.9 | C |
| 4c | - | - | - | 120.3 | C |
| 5 | - | - | - | 171.7 | C |
| 6 | 10.87 (NH) | s | - | - | |
| 7 | - | - | - | 171.7 | C |
| 7a | - | - | - | 120.3 | C |
| 7b | - | - | - | 115.9 | C |
| 7c | - | - | - | 123.0 | C |
| 8 | 8.41 | d | 8.2 | 115.5 | CH |
| 9 | 7.13 | tr | 8.2 | 121.3 | CH |
| 10 | 6.98 | d | 7.8 | 111.4 | CH |
| 11 | 10.63(OH) | s | - | 143.3 b | C |
| 11a | - | - | - | 130.7 | C |
| 12 | 11.57 (NH) | s | - | - | - |
| 12a | - | - | - | 129.7 | C |
| 12b | - | - | - | 129.7 | C |
| 13 | 11.57 (NH) | s | - | - | - |
| 13a | - | - | - | 130.6 | C |
a Obtained from Heteronuclear Single Quantum Correlation (HSQC) and Heteronuclear Multiple Bond Correlation (HMBC) in CD3OD and DMSO-d6, respectively; b estimated from DMSO-d6 spectrum.
Deduced functions of open reading frames (ORFs) in BE-13793C (bec) in the Streptomyces sp. MA37 biosynthetic gene cluster.
| Gene | Deduced Function | AA |
|---|---|---|
|
| amino acid oxidase | 508 |
|
| chromopyrrolic acid synthase | 1095 |
|
| Flavin-binding monooxygenase | 540 |
|
| cytochrome P450 oxygenase | 417 |
|
| LuxR response regulator | 221 |
Figure 4(A) Biosynthetic gene cluster of BE-13793C 1 in Streptomyces sp. MA37 and (B) Proposed biosynthetic pathway of 1.
Antimicrobial/antibiofilm tests against a panel of bacterial pathogens.
| Pathogen | Minimum Inhibitory Concentration (MIC) (µM) | |
|---|---|---|
| BE-13793C 1 | Gentamicin | |
| >140 | 1.05 | |
| >140 | 0.25 | |
| Methicillin-resistant | >140 | 2.00 |
| >140 | 1.04 | |
| >140 | 40.2 | |
| >140 | 0.25 | |
| >140 | 1.04 | |
| Biofilm | >140 | 17.8 |
Antiproliferative/cytotoxic activities of 1.
| Human Colon Carcinoma (HT29 ATCC HTB-38) | Normal Lung Cell | |
|---|---|---|
| BE-13793C | 3.16 | >140 |
| Staurosporine (IC50, µM) | 0.20 | >100 |
Antitrypanosomal activity of 1.
| IC50 (µM) | |
|---|---|
| BE-13793C | >50 |
| Staurosporine | 0.022 |