| Literature DB >> 28085024 |
Amy E Wright1, K Brian Killday2, Debopam Chakrabarti3, Esther A Guzmán4, Dedra Harmody5, Peter J McCarthy6, Tara Pitts7, Shirley A Pomponi8, John K Reed9, Bracken F Roberts10, Carolina Rodrigues Felix11, Kyle H Rohde12.
Abstract
A deep-water sponge of the genus Spongosorites has yielded a bis-indole alkaloid which we have named dragmacidin G. Dragmacidin G was first reported by us in the patent literature and has recently been reported by Hitora et al. from a sponge of the genus Lipastrotheya. Dragmacidin G is the first in this series of compounds to have a pyrazine ring linking the two indole rings. It also has a rare N-(2-mercaptoethyl)-guanidine side chain. Dragmacidin G shows a broad spectrum of biological activity including inhibition of methicillin-resistant Staphylococcus aureus, Mycobacterium tuberculosis, Plasmodium falciparum, and a panel of pancreatic cancer cell lines.Entities:
Keywords: Spongosorites; antibacterial; bis(indole) alkaloid; pancreatic cancer
Mesh:
Substances:
Year: 2017 PMID: 28085024 PMCID: PMC5295236 DOI: 10.3390/md15010016
Source DB: PubMed Journal: Mar Drugs ISSN: 1660-3397 Impact factor: 5.118
Figure 1Structure of Dragmacidin G and its pyrimidine derivative. A is the first indole moiety, B is the second indole moiety and C is the pyrazine.
1H, 13C and 15N NMR data for dragmacidin G (1) (DMSO-d6, 1H 600 MHz; 13C 150 MHz).
| Atom | δC, Multiplicity | δN | δH ( | COSY | 1H-13C HMBC b | 1H-15N HMBC c | NOESY |
|---|---|---|---|---|---|---|---|
| 1 | 324 a | ||||||
| 2 | 150.1, C | ||||||
| 3 | 143.3, C | ||||||
| 4 | 299 a | ||||||
| 5 | 135.4, CH | 8.98, s | C2 (w), C3, C6, C3″ | N1, N4 | H2″, H4″ | ||
| 6 | 145.9, C | ||||||
| 8 | 28.7, CH2 | 3.56, m | C2, C9 | N10 | |||
| 9 | 40.2, CH2 | 3.54, m | H10 | C8, C11 | |||
| 10 | 80 | 7.93, bt (4.8) | H9ab | C8, C9, C11 | N12, N13 | H9ab | |
| 11 | 156.8, C | ||||||
| 12, 13 | 72 | ||||||
| 1′ | - | 136 | 11.82, bs | H2′ | C2′, C3′, C3a′, C7a′ | H2′, H7′ | |
| 2′ | 127.9, CH | 8.08, d (2.7) | H1′ | C3, C3′, C3a′, C7a′ | N1′ | H1′ | |
| 3′ | 111.8, C | ||||||
| 3a′ | 125.4, C | ||||||
| 4′ | 123.1, CH | 8.10, d (8.9) | H5′ | C6′, C7a′ | H5′ | ||
| 5′ | 122.8, CH | 7.25, dd (8.9 1.4) | H4′, H7′ | C3a′, C7′ | H4′ | ||
| 6′ | 114.83, C | ||||||
| 7′ d | 114.4, CH | 7.70, d (1.4) | H5′ | C3a′, C5′, C7a′ | N1′ | ||
| 7a′ | 137.1, C | ||||||
| 1″ | - | 138 | 11.95, bs | H2″ | C2″, C3″, C3a″, C7a″ | H2″, H7″ | |
| 2″ | 127.7, CH | 8.33, d (2.7) | H1″ | C6, C3″, C3a″, C7a″ | N1″ | H1″ | |
| 3″ | 112.6, C | ||||||
| 3a″ | 124.0, C | ||||||
| 4″ | 122.6, CH | 8.22, d (8.9) | H5″ | C3″, C6″, C7a″ | H5, H5″, H8ab | ||
| 5″ | 123.3, CH | 7.31, dd (8.9, 1.4) | H4″, H7″ | C3a″, C7″ | H4″ | ||
| 6″ | 114.78, C a | ||||||
| 7″ d | 114.74, CH a | 7.71, d (1.4) | H5″ | C3a″, C5″, C7a″ | N1″ | ||
| 7a″ | 137.9, C |
a Assignments may be interchanged; b 1H-13C HMBC correlations, optimized for 8 Hz, are from proton(s) to the listed carbon; c 1H-15N HMBC correlations, optimized for 6 Hz are from the proton to the listed nitrogen atom; d H-7′ and H-7″ have substantial overlap but could be assigned based upon the 1H-15N HMBC experiment. This then allowed for the assignment of the 1H-13C HMBC assignments for H-7′ and H-7″ using the band selective HMBC experiment.
Figure 2Key HMBC and NOESY correlations supporting the structure assignment of 1.