| Literature DB >> 24991297 |
Ulrike Groenhagen1, Michael Maczka1, Jeroen S Dickschat1, Stefan Schulz1.
Abstract
Streptomyces sp. FORM5 is a bacterium that is known to produce the antibiotic streptazolin and related compounds. We investigated the strain for the production of volatiles using the CLSA (closed-loop stripping analysis) method. Liquid and agar plate cultures revealed the formation of new 2-alkylpyridines (streptopyridines), structurally closely related to the already known 2-pentadienylpiperidines. The structures of the streptopyridines A to E were confirmed by total synthesis. The analysis of the liquid phase by solvent extraction or extraction with an Oasis adsorbent showed that streptazolin and 2-pentadienylpiperidine are the major compounds, while the streptopyridines are only minor components. In the gas phase, only the streptopyridines could be detected. Therefore, an orthogonal set of analysis is needed to assess the metabolic profile of bacteria, because volatile compounds are obviously overlooked by traditional analytical methods. The streptopyridines are strain specific volatiles that are accompanied by a broad range of headspace constituents that occur in many actinomycetes. Volatiles might be of ecological importance for the producing organism, and, as biosynthetic intermediates or shunt products, they can be useful as indicators of antibiotic production in a bacterium.Entities:
Keywords: headspace analysis; natural products; polyketide biosynthesis; pyridine derivatives; streptazolin; volatile compounds
Year: 2014 PMID: 24991297 PMCID: PMC4077424 DOI: 10.3762/bjoc.10.146
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1Alkaloids produced by Streptomyces strain FORM5.
Volatile compounds identified in the headspace extract of Streptomyces strain FORM5. The amounts of the compounds are given as 0–2% (x), 2–8% (xx), >8% (xxx) relative to the largest peak area in the total ion chromatogram. The identification of the compound based on comparison of mass spectrum to a data base spectrum (ms), comparison of retention index to a published retention index on the same or similar GC fused silica capillary column (ri), and/or based on comparison to a synthetic or commercially available reference compound (std).
| GCa | compoundb | Ident. | FORM5 | ||
| acetoin ( | n.d.d | ms, std | xx | ||
| a | dimethyl disulfide ( | n.d. | ms, std | xx | |
| b | 2-hydroxypentan-3-one ( | 829 | 822* | ms, ri | xx |
| 3-hydroxypentan-2-one ( | 833 | 838 | ms, ri | x | |
| c | 5-hepten-2-one ( | 909 | ms | x | |
| d | 2-hydroxyhexan-3-one ( | 910 | ms | x | |
| 3-hydroxyhexan-2-one ( | 914 | ms | x | ||
| e | 2,5-dimethylpyrazine ( | 925 | 925 | ms, ri, std | x |
| f | 2-acetylfuran ( | 925 | 923 | ms, ri, std | x |
| g | benzaldehyde ( | 977 | 978 | ms, ri, std | x |
| h | dimethyl trisulfide ( | 979 | 978 | ms, ri, std | x |
| i | 1-octen-3-ol ( | 987 | 987 | ms, ri, std | x |
| j | 3-octanone ( | 994 | 994 | ms, ri, std | x |
| k | 2-propylpyridine ( | 1000 | 1001 | ms, ri, std | x |
| l | cyclohept-4-enone ( | 1023 | 1024 | ms, ri, std | x |
| n | 1082 | x | |||
| o | 1083 | 1083 | ms, ri | x | |
| methyl benzoate ( | 1108 | 1104 | ms, ri, std | x | |
| p | nonanal ( | 1116 | 1116 | ms, ri, std | x |
| 1128 | x | ||||
| q | 2-phenylethanol ( | 1129 | 1129 | ms, ri, std | x |
| 1-phenyl-2-propanone ( | 1143 | ms | x | ||
| 1-phenyl-2-propanol ( | 1147 | ms | x | ||
| 1-phenyl-1,2-propandione ( | 1183 | 1186 | ms, ri, | x | |
| methyl 2-phenylacetate ( | 1189 | 1187 | ms | x | |
| 2-methylisoborneol ( | 1199 | 1201 | ms, ri, std | x | |
| r | 2-pentylpyridine ( | 1205 | 1205 | ms, ri, std | x |
| s | ( | 1207 | 1208 | ms, ri, std | xxx |
| t | 1212 | x | |||
| u | decanal ( | 1216 | 1216 | ms, ri, std | x |
| v | 1219 | x | |||
| dimethyl tetrasulfide ( | 1233 | 1234 | ms, ri, std | x | |
| benzothiazole ( | 1246 | 1246 | ms, ri, std | x | |
| ethyl 2-phenylacetate | 1256 | 1252 | ms | x | |
| w | 1283 | x | |||
| x | 1321 | x | |||
| y | 2-((1 | 1327 | 1334 | ms, ri, std | xx |
| z | 2-((1 | 1352 | 1358 | ms, ri, std | xxx |
| aa | 2-((1 | 1362 | 1363 | ms, ri, std | xx |
| ab | 2-((1 | 1366 | 1368 | ms, ri, std | xxx |
| ac | geosmin ( | 1429 | 1430 | ms, ri, std | x |
| ad | 1465 | x | |||
| ae | valencene ( | 1499 | 1498 | ms, ri, std | x |
| af | 1529 | ms | x | ||
aCompound assignment refers to Figure S2 (Supporting Information File 1), bartefacts found in both control and inoculated samples are not listed, ctaken from NIST Chemistry WebBook [14] or our own data base, *DB-5, A: artifact; dnot determined.
Figure 2Part of the total ion chromatogram of the headspace extract of Streptomyces sp. FORM5 with the structures of 2-propylpyridine (6), 2-pentylpyridine (7), (E)-2-(pent-3-en-1-yl)pyridine (8), 2-((1Z,3E)-penta-1,3-dien-1-yl)pyridine (9), 2-((1Z,3Z)-penta-1,3-dien-1-yl)pyridine (10), 2-((1E,3Z)-penta-1,3-dien-1-yl)pyridine (11), 2-((1E,3E)-penta-1,3-dien-1-yl)pyridine (12).
Figure 3Mass spectra of a) (E)-2-(pent-3-en-1-yl)pyridine (streptopyridine E, 8), b) (1Z,3E)-penta-1,3-dien-1-yl)pyridine (streptopyridine A, 9), c) 2-((1E,3E)-penta-1,3-dien-1-yl)pyridine (streptopyridine B, 12).
Scheme 1Synthesis of streptopyridines A to E (8–12) and the 2-alkylpyridines 6 and 7.
Figure 4Total ion chromatograms of the product mixtures of isomers 9–12 synthesized under E-selective (a) and Z-selective Wittig reaction conditions (b).
Figure 5Structures of piperidine derivatives 20–26.
Figure 6a) Mass spectrum of streptopyridine A (12), b) mass spectrum of 12 after feeding of 2 mM 13C2-sodium acetate, c) single ion chromatogram of 151, 153, 155 m/z after feeding with 2 mM 13C2-sodium acetate; d) single ion chromatogram of the 153 m/z molecular ion after feeding with 2 mM 13C2-acetate, 1 mM sodium 13C2-acetate, and a non fed culture as comparison. The ions at m/z 151, 153, and 155 indicate the incorporation of three, four, or five 13C2-acetate units.
Scheme 2Proposed biosynthesis of the streptopyridines. PKS: polyketide synthase; red: reduction; ta: transamination; ox: oxidation; elim: elimination.
Figure 7Compounds detected in the headspace of Streptomyces sp. FORM5.