| Literature DB >> 31443260 |
Germana Esposito1, Linh H Mai2, Arlette Longeon2, Alfonso Mangoni1, Emilie Durieu3, Laurent Meijer3, Rob Van Soest4, Valeria Costantino5, Marie-Lise Bourguet-Kondracki6.
Abstract
Thirteen nitrogen-containing molecules (1a/1b and 2-12) were isolated from the Indonesian sponge Acanthostrongylophora ingens, highlighting the richness of this organism as a source of alkaloids. Their structures were elucidated using one- and two-dimensional NMR spectroscopy and HR-ESI-MS, while the stereochemistry of the diketopiperazines was established using Marfey's method. All compounds were screened in our standard bioactivity assays, including antibacterial, antikinases, and amyloid β-42 assays. The most interesting bioactivity result was obtained with the known acanthocyclamine A (3), which revealed for the first time a specific Escherichia coli antimicrobial activity and an inhibitory effect on amyloid β-42 production induced by aftin-5 and no cytotoxicity at the dose of 26 µM. These results highlight the potentiality of a bipiperidine scaffold as a promising skeleton for preventing or reducing the production of amyloid β-42, a key player in the initiation of Alzheimer's disease.Entities:
Keywords: Acanthostrongylophora ingens; alkaloid; antimicrobial activity; bipiperidine scaffold; diketopiperazine; halicyclamine derivative; inhibitor of amyloid β-42; kinase inhibitor; marine sponge
Mesh:
Substances:
Year: 2019 PMID: 31443260 PMCID: PMC6723059 DOI: 10.3390/md17080472
Source DB: PubMed Journal: Mar Drugs ISSN: 1660-3397 Impact factor: 5.118
Figure 1Structures of compounds 1–5.
Figure 2Most significant correlations provided by the COSY and HMBC NMR spectra of epi-tetradehydrohalicyclamine B (1a) and tetradehydrohalicyclamine B (1b).
NMR data of epi-tetradehydrohalicyclamine B (1a) (700 MHz, CD3OD).
| Pos. | δH [mult., | δC (mult.) | COSY | HMBC | NOESY | |
|---|---|---|---|---|---|---|
| 1 | 146.2 (C) | |||||
| 2 | 9.44 s | 149.4 (CH) | 2, 4, 26a | 4, 15, 26, 27 | 16a, 21a, 21b, 25a, 25b, 26a, 28 | |
| 3 | 145.7 (C) | |||||
| 4 | 8.73 s | 141.5 (CH) | 2, 6b, 26a, 27 | 2, 3, 6, 26, 27 | 6b, 7b, 26a, 26b | |
| 5 | ||||||
| 6 | a | 4.64 ddd (13.4, 13.4, 4.1) | 60.0 (CH2) | 6b, 7a, 7b, 27 | 4, 7, 27 | 7a, 9b, 27 |
| b | 4.84 ddd (13.4, 5.6, 1.5) | 6a, 7a, 7b | 4, 7, 8, 27 | 4, 7a, 7b | ||
| 7 | a | 2.02 br. dd (14.6, 13.3) | 30.2 (CH2) | 6a, 6b, 8a, 8b | 6a, 6b, 7b | |
| b | 2.23 m | 6a, 6b, 7a, 8a, 8b | 4, 6b, 7a, 8a, 8b | |||
| 8 | a | 0.20 ddddd (14.6, 13.3, 13.1, 4.0, 2.9) | 26.4 (CH2) | 7a, 7b, 8b, 9a, 9b | 7b, 8b, 9b, 12a | |
| b | 1.54 ddddd (14.6, 14.0, 4.1, 4.0, 4.0) | 7a, 7b, 8a, 9b | 8a, 10 | |||
| 9 | a | 1.62 dddd (13.2, 13.2, 5.5, 4.0) | 25.5 (CH2) | 8a, 9b, 10 | 8, 10, 11 | 8a, 9b, 10 |
| b | 2.58 dddd (14.0, 13.0, 9.0, 4.1) | 8a, 9a, 10 | 10, 11 | 8a, 13a | ||
| 10 | 5.48 m | 130.1(CH) | 9 | 8b, 9b | ||
| 11 | 5.45 m | 130.9 (CH) | 12 | 12 | 12, 13a, 13b | |
| 12 | a | 1.68 tt (13.0, 4.3) | 25.0 (CH2) | 11, 13a, 13b | 13 | 13a |
| b | 2.58 dddd (14.0, 14.0, 8.5, 4.0) | |||||
| 13 | a | 0.02 dddd (14.3, 14.3, 11.4, 4.0) | 35.0 (CH2) | 12, 13b, 14 | 12, 14 | 8a, 9b, 13b, 28 |
| b | 1.31 dddd (14.3, 14.3, 4.0, 3.0) | 12, 13a, 14 | 15, 28 | 11, 12, 13a, 14 | ||
| 14 | 2.30 m | 37.1 (CH) | 13a, 13b, 15, 16a | 28 | 12, 13b, 15, 16a, 17b, 19a | |
| 15 | 3.56 ddd (9.8, 5.2, 1.4) | 36.4 (CH) | 14, 16a | 1, 2, 14, 16, 17, 27, 28 | 16a, 16b, 17a, 27 | |
| 16 | a | 2.09 dddd (14.4, 10.3, 7.6, 1.4) | 30.5 (CH2) | 1, 13, 14, 15, 17 | 2, 15, 17b | |
| b | 2.32 m | 15, 16a, 17a, 17b | 1, 15 | 15, 16a, 17a | ||
| 17 | a | 2.55 ddd (11.6, 10.3, 5.2) | 46.8 (CH2) | 16a, 16b, 17b | 13 | |
| b | 2.86 ddd (11.6, 7.6, 2.8) | 16a, 16b, 17a | 13, 15, 16, 19, 28 | |||
| 18 | ||||||
| 19 | a | 2.55 m | 57.5 (CH2) | 20b, 21a | 17, 21, 28 | |
| b | 2.62 m | 20a, 21b | 16, 17, 28 | |||
| 20 | a | 1.58 m | 26.6 (CH2) | 19b, 21b | 20 | 19b, 21b |
| b | 1.68 m | 19a, 21a, 21b, 22b | 19 | |||
| 21 | a | 1.55 m | 28.3 (CH2) | 21b | 19, 20, 22 | 2, 22a |
| b | 1.74 m | 19b, 21a, 22a, 22b | 19, 20, 22 | 2, 21a, 22b | ||
| 22 | a | 2.04 dddd (13.5, 10.2, 7.8, 5.5) | 27.7 (CH2) | 21a, 21b, 22b, 23 | 21 | 2 |
| b | 2.20 m | 21a, 21b, 22a, 23, 25b | 21 | 21a, 21b, 22a, 23, 25b | ||
| 23 | 5.75 ddd (10.1, 8.2, 8.2) | 132.2 (CH) | 22a, 22b, 24 | 22, 25 | 21a, 22a, 22b, 24 | |
| 24 | 5.48 m | 130.4 (CH) | 23, 25a, 25b | 22, 25 | 23, 25b, 26a, 26b | |
| 25 | a | 2.49 dddd (15.2, 10.0, 8.2, 4.8) | 28.8 (CH2) | 24, 26a, 26b | 3, 23, 24, 26 | |
| b | 2.56 dddd (15.2, 8.8, 8.2, 7.0) | 24, 26a, 26b | 3, 23, 24, 26 | |||
| 26 | a | 2.85 ddd (14.6, 8.8, 4.8) | 33.6 (CH2) | 25a, 25b | 2, 3, 4, 24, 25 | |
| b | 3.08 ddd (14.6, 8.2, 8.2) | 25a, 25b, 26a | 2, 3, 4, 24, 25 | 4, 25b, 26a | ||
| 27 | 9.04 s | 144.2 (CH) | 1, 2, 4, 6a | 2, 4, 6, 15 | 6a, 8a, 9b, 12a, 15 | |
| 28 | 2.35 m | 54.8 (CH2) | 13, 14, 17, 19 | 2, 13a, 13b, 16a, 17a, 20a |
Experimental and calculated 1H-1H coupling constants of epi-tetradehydrohalicyclamine B (1a).
| Coupled Protons | Calculated 3 | Experimental 3 |
|---|---|---|
| H-6a/H-7a | 13.6 | 13.4 |
| H-6a/H-7b | 3.9 | 4.1 |
| H-6b/H-7a | 5.8 | 5.6 |
| H-6b/H-7b | 1.6 | 1.6 |
| H-7a/H-8a | 2.7 | 2.9 |
| H-7a/H-8b | 4.0 | 4.1 |
| H-7b/H-8a | 13.2 | 13.1 |
| H-7b/H-8b | 3.0 | 4.0 |
| H-8a/H-9a | 13.1 | 13.3 |
| H-8a/H-9b | 3.3 | 4.0 |
| H-8b/H-9a | 4.3 | 4.0 |
| H-8b/H-9b | 14.2 | 14.0 |
| H-9a/H-10 | 6.0 | 5.5 |
| H-9b/H-10 | 10.3 | 9.0 |
| H-11/H-12b | 10.6 | 8.5 |
| H-12a/H-13a | 13.0 | 14.3 |
| H-12a/H-13b | 4.1 | 4.0 |
| H-12b/H-13a | 3.4 | 4.0 |
| H-12b/H-13b | 13.9 | 14.0 |
| H-13a/H-14 | 11.6 | 11.4 |
| H-13b/H-14 | 2.6 | 3.0 |
| H-14/H-15 | 5.0 | 5.2 |
| H-15/H-16a | 1.3 | 1.4 |
| H-15/H-16b | 9.3 | 9.8 |
| H-16a/H-17a | 9.5 | 10.3 |
| H-16a/H-17b | 7.2 | 7.6 |
| H-16b/H-17a | 5.6 | 5.2 |
| H-16b/H-17b | 3.0 | 2.8 |
Figure 3Representative conformations of compound 1a with (a) the piperidine ring in twist-boat conformation and (b) the piperidine ring in the chair conformation. The shielded protons H-8a and H-13a are marked in yellow.
Figure 4Structures of diketopiperazines 6–12 isolated from Acanthostrongylophora ingens.
Significant results of the biological activity evaluation of 1–6.
| Compound |
|
|
|
| |||
|---|---|---|---|---|---|---|---|
|
|
|
|
| N2a-APP695 | |||
| 1a/1b | ND | ND | NA | NA | NA | NA | NA |
| 2 | ND | ND | NA | NA | NA | NA | NA |
| 3 | ND | 12 mm | NA | NA | NA | 26 µM | NA |
| 4 | 10 mm | ND | NA | NA | NA | NA | NA |
| 5 | ND | ND | 6 µM | NA | NA | NA | NA |
| 6 | ND | ND | NA | 1 µM | NA | NA | NA |
a Expressed as inhibition diameter (mm) at 100 µg/disk; b Expressed as inhibitory activity (IC50 in µM); c Effect on amyloid β-42 level; ND: No activity detected at 100 µg/disk; NA: Not active at the dose tested (10 µg/mL).
Figure 5HR-ESIMS-HPLC analysis of Marfey’s derivatives from DKP cyclo(Pro-Phe) (6): Extracted-ion chromatograms at m/z 368.1201 of L-1-fluoro-2,4-dinitrophenyl-5-alanine amide (FDAA)-Pro from DKP (a); of authentic L-FDAA-L-Pro (b); and of authentic D-FDAA-L-Pro (c); extracted-ion chromatograms at m/z 418.1357 of L-FDAA-Phe from DKP (d); of authentic L-FDAA-L-Phe (e); and of authentic D-FDAA-L-Phe (f).