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Duramycin C

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Duramycin C is a new lanthionine containing antibiotic, has been isolated from Streptomyces griseoluteus (R2107). Duramycin C is a potent inhibitor of human phospholipase A2. It exhibits only a weak antibacterial activity against B.subtilis, and does not display antimicrobial activity against S.aureus, S.mitis, E.coli, K.pneumoniae, P.vulgaris and C.albicans.

Category
Functional Peptides
Catalog number
BAT-012302
CAS number
132268-38-3
Molecular Formula
C82H115N23O27S3
Molecular Weight
1951.12
IUPAC Name
(1S,4S,13S,16S,19S,22S,25S,28R,31S,37S,40S,41S,44R,47S,50S,53S,56R,65S,70S)-44-amino-31-[(R)-carboxy(hydroxy)methyl]-2,5,14,17,20,23,26,29,32,35,38,45,48,51,54,57,67-heptadecahydroxy-37,50-bis(2-hydroxy-2-iminoethyl)-25-(hydroxymethyl)-4-[(4-hydroxyphenyl)methyl]-22-(1H-indol-3-ylmethyl)-41,47,70-trimethyl-16-(2-methylpropyl)-8-oxo-42,69,72-trithia-3,6,9,15,18,21,24,27,30,33,36,39,46,49,52,55,58,60,66-nonadecazapentacyclo[38.18.9.319,56.328,53.09,13]triheptaconta-2,5,14,17,20,23,26,29,32,35,38,45,48,51,54,57,66-heptadecaene-65-carboxylic acid
Purity
≥98%
Melting Point
>280 °C (dec.)
Sequence
CANSCSYGPLTWSCDGNTK
Solubility
Soluble in Water
InChI
InChI=1S/C82H115N23O27S3/c1-35(2)21-46-70(118)102-62-38(5)135-34-55-75(123)97-51(72(120)94-47(22-39-15-17-41(107)18-16-39)67(115)89-29-60(111)105-20-10-14-56(105)77(125)95-46)27-86-19-9-8-13-45(81(129)130)92-79(127)61-37(4)134-31-43(83)66(114)90-36(3)65(113)93-50(25-58(85)109)69(117)99-53(74(122)101-55)32-133-33-54(76(124)104-63(64(112)82(131)132)78(126)88-28-59(110)91-49(24-57(84)108)71(119)103-61)100-73(121)52(30-106)98-68(116)48(96-80(62)128)23-40-26-87-44-12-7-6-11-42(40)44/h6-7,11-12,15-18,26,35-38,43,45-56,61-64,86-87,106-107,112H,8-10,13-14,19-25,27-34,83H2,1-5H3,(H2,84,108)(H2,85,109)(H,88,126)(H,89,115)(H,90,114)(H,91,110)(H,92,127)(H,93,113)(H,94,120)(H,95,125)(H,96,128)(H,97,123)(H,98,116)(H,99,117)(H,100,121)(H,101,122)(H,102,118)(H,103,119)(H,104,124)(H,129,130)(H,131,132)/t36-,37-,38-,43-,45-,46-,47-,48-,49-,50-,51-,52-,53+,54-,55-,56-,61+,62+,63-,64+/m0/s1
InChI Key
KRKLISUEFJLJGP-RSISPAPISA-N
Canonical SMILES
CC1C2C(=NC(C(=NC(C(=NC3CSCC4C(=NC(CS1)C(=NC(CNCCCCC(N=C(C(C(SCC(C(=NC(C(=NC(C(=N4)O)CC(=N)O)O)C)O)N)C)N=C(C(N=C(CN=C(C(N=C3O)C(C(=O)O)O)O)O)CC(=N)O)O)O)C(=O)O)C(=NC(C(=NCC(=O)N5CCCC5C(=NC(C(=N2)O)CC(C)C)O)O)CC6=CC=C(C=C6)O)O)O)O)O)CO)O)CC7=CNC8=CC=CC=C87)O
1. Insights into the Biosynthesis of Duramycin
Liujie Huo, Ayşe Ökesli, Ming Zhao, Wilfred A van der Donk Appl Environ Microbiol. 2017 Jan 17;83(3):e02698-16. doi: 10.1128/AEM.02698-16. Print 2017 Feb 1.
Lantibiotics are ribosomally synthesized and posttranslationally modified antimicrobial peptides that are characterized by the thioether cross-linked bisamino acids lanthionine (Lan) and methyllanthionine (MeLan). Duramycin contains 19 amino acids, including one Lan and two MeLans, an unusual lysinoalanine (Lal) bridge formed from the ε-amino group of lysine 19 and a serine residue at position 6, and an erythro-3-hydroxy-l-aspartic acid at position 15. These modifications are important for the interactions of duramycin with its biological target, phosphatidylethanolamine (PE). Based on the binding affinity and specificity for PE, duramycin has been investigated as a potential therapeutic, as a molecular probe to investigate the role and localization of PE in biological systems, and to block viral entry into mammalian cells. In this study, we identified the duramycin biosynthetic gene cluster by genome sequencing of Streptomyces cinnamoneus ATCC 12686 and investigated the dur biosynthetic machinery by heterologous expression in Escherichia coli In addition, the analog duramycin C, containing six amino acid changes compared to duramycin, was successfully generated in E. coli The substrate recognition motif of DurX, an α-ketoglutarate/iron(II)-dependent hydroxylase that carries out the hydroxylation of aspartate 15 of the precursor peptide DurA, was also investigated using mutagenesis of the DurA peptide. Both in vivo and in vitro results demonstrated that Gly16 is important for DurX activity. Importance: Duramycin is a natural product produced by certain bacteria that binds to phosphatidylethanolamine (PE). Because PE is involved in many cellular processes, duramycin is an antibiotic that kills bacteria, but it has also been used as a molecular probe to detect PE and monitor its localization in mammalian cells and even whole organisms, and it was recently shown to display broad-spectrum inhibition of viral entry into host cells. In addition, the molecule has been evaluated as treatment for cystic fibrosis. We report here the genes that are involved in duramycin biosynthesis, and we produced duramycin by expressing those genes in Escherichia coli We show that duramycin analogs can also be produced. The ability to access duramycin and analogs by production in E. coli opens opportunities to improve duramycin as an antibiotic, PE probe, antiviral, or cystic fibrosis therapeutic.
2. Solution structures of the lantibiotics duramycin B and C
N Zimmermann, S Freund, A Fredenhagen, G Jung Eur J Biochem. 1993 Sep 1;216(2):419-28. doi: 10.1111/j.1432-1033.1993.tb18159.x.
The solution structures of the lantibiotics duramycin B in H2O/2H2O (9:1) and duramycin C in (2H3)acetonitrile/H2O (1:1) have been determined by NMR followed by distance-geometry and restrained-molecular-mechanics calculations. The constitution and location of three thioether bridges and a lysinoalanine ring system could be established by unambiguously assigned NOE contacts between the bridging side chains. Model building based on NMR constraints resulted in a U-shaped topology of the tetracyclic 19-peptides with a turn around Pro9 and a kink along a virtual line from residues 5 to 13. This clamp-like conformation is stabilized by the thioether bridges and is additionally supported by an antiparallel beta-strand-like structure of the N-termini and C-termini and the inherent amphiphilicity of duramycin-type lantibiotics. The duramycins B and C differ mainly in the relative mobilities of their rings A, C and D. Duramycin B is closely related to cinnamycin with an exchange of Phe10 to leucine, whereas duramycin C differs from duramycin B by three conserved and two non-conserved amino-acid exchanges.
3. Cloning and engineering of the cinnamycin biosynthetic gene cluster from Streptomyces cinnamoneus cinnamoneus DSM 40005
D A Widdick, H M Dodd, P Barraille, J White, T H Stein, K F Chater, M J Gasson, M J Bibb Proc Natl Acad Sci U S A. 2003 Apr 1;100(7):4316-21. doi: 10.1073/pnas.0230516100. Epub 2003 Mar 17.
Lantibiotics are ribosomally synthesized oligopeptide antibiotics that contain lanthionine bridges derived by the posttranslational modification of amino acid residues. Here, we describe the cinnamycin biosynthetic gene cluster (cin) from Streptomyces cinnamoneus cinnamoneus DSM 40005, the first, to our knowledge, lantibiotic gene cluster from a high G+C bacterium to be cloned and sequenced. The cin cluster contains many genes not found in lantibiotic clusters from low G+C Gram-positive bacteria, including a Streptomyces antibiotic regulatory protein regulatory gene, and lacks others found in such clusters, such as a LanT-type transporter and a LanP-type protease. Transfer of the cin cluster to Streptomyces lividans resulted in heterologous production of cinnamycin. Furthermore, modification of the cinnamycin structural gene (cinA) led to production of two naturally occurring lantibiotics, duramycin and duramycin B, closely resembling cinnamycin, whereas attempts to make a more widely diverged derivative, duramycin C, failed to generate biologically active material. These results provide a basis for future attempts to construct extensive libraries of cinnamycin variants.
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