| Literature DB >> 30634398 |
Tehane Ali1, Tiffany M Pham2, Kou-San Ju3,4,5,6, Harinantenaina L Rakotondraibe7,8,9.
Abstract
Ent-homocyclopiamine B (1), a new prenylated indole alkaloid bearing an alicyclic nitro group along with 2-methylbutane-1,2,4-triol (2) were isolated from an endophytic fungus Penicillium concentricum of the liverwort Trichocolea tomentella (Trichocoleaceae). The structure of 1 was elucidated through extensive spectroscopic analyses and comparison with data reported for a structurally related nitro-bearing Penicillium metabolite, clopiamine C (3), which contain an indolizidine ring instead of the quinolizine ring in 1. The new compound, ent-homocyclopiamine B, exhibited slight growth inhibition against Gram-positive bacteria. Based on the reported biosynthesis of related compounds and the isolation of the mevalonic acid derived compound 2-methyl-1,2,4-butanetriol (2), we proposed that ent-homocylopiamine B (1) was biosynthesized from lysine and prenyl group-producing mevalonic pathway.Entities:
Keywords: Penicillium; antimicrobial; endophyte; fungus; indole alkaloid; liverwort; metabolite
Mesh:
Substances:
Year: 2019 PMID: 30634398 PMCID: PMC6359132 DOI: 10.3390/molecules24020218
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1Structures of Cyclopiamines and Citranilines.
Figure 2Structure of compound 1.
Figure 3Plausible biosynthetic routes and components of 1.
NMR spectroscopic data for compounds 1 and 3.
| Position | Clopiamine C (3) | |||
|---|---|---|---|---|
| 1H | 13C | 1H | 13C | |
| δH ( | δC, Type | δH ( | δC, Type | |
| 1 | 62.3, C | 60.2, C | ||
| 2 | 183.3, C | 180.2, C | ||
| 3 | ||||
| 4 | 57.9, C | 56.0, C | ||
| 5 | 2.50 (d, 15.6) | 54.1, CH2 | 2.87 (d, 15.0) | 52.4, CH2 |
| 6 | 192.9, C | 189.4, C | ||
| 7 | 108.4, C | 106.7, C | ||
| 8 | 160.2, C | 158.4, C | ||
| 9 | 6.65 (d, 8.4) | 105.2, CH | 6.64 (d, 8.4) | 103.7, CH |
| 10 | 7.30 (d, 8.4) | 133.6, CH | 7.56 (d, 8.4) | 132.0, C |
| 11 | 122.0, C | 118.0, C | ||
| 12 | 149.9, C | 148.0, C | ||
| 13 | 49.2, C | 48.8, C | ||
| 14 | 2.87 (m) | 48.8, CH | 3.54 (d, 9.0) | 44.0, CH |
| 15 | 1.33 (m) | 27.2, CH2 | 1.85 (m) | 26.8, CH2 |
| 16 | 3.17 (m) | 57.0, CH | 1.92 (m) | 61.2, CH |
| 17 | 1.58 (qt, 12.9, 3.9) | 26.9, CH2 | 1.90 (m) | 30.9, CH2 |
| 18 | 1.25 (m) | 21.1, CH2 | 1.63 (m) | 20.7, CH2 |
| 19 | 1.22 (m) | 26.1, CH2 | 2.87 (m) | 52.9, CH2 |
| 20 | 2.83 (br d, 12.5) | 56.0, CH2 | ||
| 21 | 3.64 (d, 12.6) | 64.0, CH2 | ||
| 22 | 3.48 (d, 11.9) | 60.1, CH2 | 94.6, C | |
| 23 | 97.2, C | 2.68 (d, 15.6) | 41.3, CH2 | |
| 24 | 2.60 (d, 16.1) | 44.7, CH2 | 1.57 (s) | 25.6, CH3 |
| 25 | 1.70 (s) | 26.8, CH3 | 1.26 (s) | 23.2, CH3 |
| 26 | 1.40 (s) | 23.7, CH3 | 3.79 (s) | 55.8, CH3 |
| 27 | 3.80 (s) | 56.5, CH3 | 0.97 (s) | 22.8, CH3 |
| 28 | 0.95 (s) | 24.4, CH3 | 0.87 (s) | 22.8, CH3 |
| 29 | 0.82 (s) | 23.5, CH3 | ||
a 700 MHz for 1H-NMR and 150 MHz for 13C, measured in CD3OD-d4, b From reference [3].