Nogalamycin

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Nogalamycin
Category Antibiotics
Catalog number BBF-04148
CAS 1404-15-5
Molecular Weight 787.80
Molecular Formula C39H49NO16
Purity >95% by HPLC

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Description

An unusual anthracycline produced by streptomyces nogalater var. Nogalater. It is a potent antibacterial and antitumor agent that interacts with DNA by intercalation.

Specification

Synonyms U 15167; Antibiotic U 15167; Nogalamicina; Nogalamycinum
Storage Store at -20°C
IUPAC Name methyl (1R,10S,12S,13R,21R,22S,23R,24R)-23-(dimethylamino)-4,8,12,22,24-pentahydroxy-1,12-dimethyl-6,17-dioxo-10-[(2R,3R,4R,5S,6S)-3,4,5-trimethoxy-4,6-dimethyloxan-2-yl]oxy-20,25-dioxahexacyclo[19.3.1.02,19.05,18.07,16.09,14]pentacosa-2,4,7(16),8,14,18-hexaene-13-carboxylate
Canonical SMILES CC1C(C(C(C(O1)OC2CC(C(C3=CC4=C(C(=C23)O)C(=O)C5=C(C=C6C(=C5C4=O)OC7C(C(C(C6(O7)C)O)N(C)C)O)O)C(=O)OC)(C)O)OC)(C)OC)OC
InChI InChI=1S/C39H49NO16/c1-14-32(49-7)39(4,52-10)33(50-8)36(53-14)54-19-13-37(2,48)24(34(47)51-9)15-11-16-21(27(43)20(15)19)28(44)22-18(41)12-17-30(23(22)26(16)42)55-35-29(45)25(40(5)6)31(46)38(17,3)56-35/h11-12,14,19,24-25,29,31-33,35-36,41,43,45-46,48H,13H2,1-10H3/t14-,19-,24-,25-,29-,31+,32-,33-,35+,36-,37-,38+,39+/m0/s1
InChI Key KGTDRFCXGRULNK-JYOBTZKQSA-N
Source Streptomyces sp.

Properties

Appearance Red Orange Solid
Antibiotic Activity Spectrum neoplastics (Tumor)
Boiling Point 899.9°C at 760 mmHg
Density 1.49 g/cm3
Solubility Soluble in ethanol, methanol, DMF, DMSO

Reference Reading

1. Evolution-guided engineering of non-heme iron enzymes involved in nogalamycin biosynthesis
Pedro Dinis, Mikko Metsä-Ketelä, Vilja Siitonen, Benjamin Nji Wandi, Vladimir Vukic, Tiina A Salminen FEBS J . 2020 Jul;287(14):2998-3011. doi: 10.1111/febs.15192.
Microbes are competent chemists that are able to generate thousands of chemically complex natural products with potent biological activities. The key to the formation of this chemical diversity has been the rapid evolution of secondary metabolism. Many enzymes residing on these metabolic pathways have acquired atypical catalytic properties in comparison with their counterparts found in primary metabolism. The biosynthetic pathway of the anthracycline nogalamycin contains two such proteins, SnoK and SnoN, belonging to nonheme iron and 2-oxoglutarate-dependent mono-oxygenases. In spite of structural similarity, the two proteins catalyze distinct chemical reactions; SnoK is a C2-C5″ carbocyclase, whereas SnoN catalyzes stereoinversion at the adjacent C4″ position. Here, we have identified four structural regions involved in the functional differentiation and generated 30 chimeric enzymes to probe catalysis. Our analyses indicate that the carbocyclase SnoK is the ancestral form of the enzyme from which SnoN has evolved to catalyze stereoinversion at the neighboring carbon. The critical step in the appearance of epimerization activity has likely been the insertion of three residues near the C-terminus, which allow repositioning of the substrate in front of the iron center. The loss of the original carbocyclization activity has then occurred with changes in four amino acids near the iron center that prohibit alignment of the substrate for the formation of the C2-C5″ bond. Our study provides detailed insights into the evolutionary processes that have enabled Streptomyces soil bacteria to become the major source of antibiotics and antiproliferative agents. ENZYMES: EC number 1.14.11.
2. The biochemical pharmacology of nogalamycin and its derivatives
L H Li, W C Krueger Pharmacol Ther . 1991;51(2):239-55. doi: 10.1016/0163-7258(91)90080-6.
This review assimilates up-to-date information on the biochemical pharmacology of nogalamycin and selected derivatives that have shown good biological activities and/or received a relatively detailed investigation. The structure and chemical preparation of these derivatives from nogalamycin is described and the nomenclature which has been rather perplexing in the literature is clarified. The interaction of this class of compounds, particularly nogalamycin, with DNA is extensively reviewed. The biochemical mechanism of action of nogalamycin and its structurally closely-related derivatives is described. Among nogalamycin derivatives, menogaril showed distinct biochemical effects as well as superior cytotoxicity and antitumor activity and also proved to be effective against breast cancer clinically.
3. Inactivation and identification of three genes encoding glycosyltransferase required for biosynthesis of nogalamycin
Lei Shao, Xuanwen Shi, Wei Liu, Bingji Ma, Tian Pu, Siyuan Wang, Xiaorong Gao Biotechnol Appl Biochem . 2015 Nov-Dec;62(6):765-71. doi: 10.1002/bab.1332.
Nogalamycin is an anthracycline antitumor antibiotic, consisting of the aromatic aglycone attached with a nogalose and a nogalamine. At present, the biosynthesis pathway of nogalamycin, especially the glycosylation mechanism of the two deoxysugar moieties, had still not been extensively investigated in vivo. In this study, we inactivated the three glycotransferase genes in the nogalamycin-produced strain, and investigated the function of these genes by analyzing the metabolites profiles in the fermentation broth. The in-frame deletion of snogD and disruption of snogE abolished the production of nogalamycin completely, indicating that the gene products of snogD and snogE are essential to the biosynthesis of nogalamycin. On the other hand, in-frame deletion of snogZ does not abolish the production of nogalamycin, but production yield was reduced to 28% of the wild type, implying that snogZ gene may involved in the activation of other glycotransferases in nogalamycin biosynthesis. This study laid the foundation of modification of nogalamycin biosynthesis/production by genetic engineering methods.

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