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1.
J Org Chem ; 73(15): 5759-65, 2008 Aug 01.
Article in English | MEDLINE | ID: mdl-18582113

ABSTRACT

The biosynthesis of the 3,4-dihydroxybenzoate moieties of the siderophore petrobactin, produced by B. anthracis str. Sterne, was probed by isotopic feeding experiments in iron-deficient media with a mixture of unlabeled and D-[(13)C6]glucose at a ratio of 5:1 (w/w). After isolation of the labeled siderophore, analysis of the isotopomers was conducted via one-dimensional (1)H and (13)C NMR spectroscopy, as well as (13)C-(13)C DQFCOSY spectroscopy. Isotopic enrichment and (13)C-(13)C coupling constants in the aromatic ring of the isolated siderophore suggested the predominant route for the construction of the carbon backbone of 3,4-DHB (1) involved phosphoenol pyruvate and erythrose-4-phosphate as ultimate precursors. This observation is consistent with that expected if the shikimate pathway is involved in the biosynthesis of these moieties. Enrichment attributable to phosphoenol pyruvate precursors was observed at C1 and C6 of the aromatic ring, as well as into the carboxylate group, while scrambling of the label into C2 was not. This pattern suggests 1 was biosynthesized from early intermediates of the shikimate pathway and not through later shikimate intermediates or aromatic amino acid precursors.


Subject(s)
Bacillus anthracis/chemistry , Bacillus anthracis/metabolism , Benzamides/chemistry , Benzamides/metabolism , Hydroxybenzoates/chemistry , Hydroxybenzoates/metabolism , Magnetic Resonance Spectroscopy , Molecular Structure , Shikimic Acid/chemistry
2.
Biometals ; 20(6): 853-67, 2007 Dec.
Article in English | MEDLINE | ID: mdl-17273817

ABSTRACT

The siderophore produced by Rhodococcus rhodochrous strain OFS, rhodobactin, was isolated from iron-deficient cultures and purified by a combination of XAD-7 absorptive/partition resin column and semi-preparative HPLC. The siderophore structure was characterized using 1D and 2D (1)H, (13)C and (15)N NMR techniques (DQFCOSY, TOCSY, NOESY, HSQC and LR-HSQC) and was confirmed using ESI-MS and MS/MS experiments. The structural characterization revealed that the siderophore, rhodobactin, is a mixed ligand hexadentate siderophore with two catecholate and one hydroxamate moieties for iron chelation. We further investigated the effects of Fe concentrations on siderophore production and found that Fe limiting conditions (Fe concentrations from 0.1 microM to 2.0 microM) facilitated siderophore excretion. Our interests lie in the role that siderophores may have in binding metals at mixed contamination sites (containing metals/radionuclides and organics). Given the broad metabolic capacity of this microbe and its Fe scavenging ability, R. rhodochrous OFS may have a competitive advantage over other organisms employed in bioremediation.


Subject(s)
Rhodococcus/metabolism , Siderophores/chemistry , Agar/chemistry , Chromatography, High Pressure Liquid/methods , Epinephrine/analogs & derivatives , Epinephrine/metabolism , Hydrogen-Ion Concentration , Hydrolysis , Iron/chemistry , Iron/metabolism , Ligands , Magnetic Resonance Spectroscopy , Mass Spectrometry , Metals/chemistry , Models, Chemical , Peptides/chemistry , Spectrometry, Mass, Electrospray Ionization , Spectrophotometry/methods , Spectrophotometry, Ultraviolet/methods , Time Factors
3.
J Org Chem ; 70(14): 5449-60, 2005 Jul 08.
Article in English | MEDLINE | ID: mdl-15989326

ABSTRACT

[structure: see text] Two approaches to the synthesis of the aglycon 120 of polycavernoside A (1) were developed, only one of which was completed. The successful "second-generation" route assembled the aglycon seco acids 102 and 106 via Nozaki-Hiyama-Kishi coupling of aldehyde 70, prepared from methyl (S)-3-hydroxy-2-methylpropionate (72) and (S)-pantolactone (73), with vinyl bromide 71. The latter was obtained from a sequence which commenced from the silyl ether 24 of 3-hydroxypropionaldehyde and entailed cyclization of (Z)-zeta-hydroxy-alpha,beta-unsaturated ester 82. Regioselective Yamaguchi lactonization of trihydroxycarboxylic acids 102 and 106 and subsequent functional-group adjustments led to macrolactone 120, to which the fucopyranosylxylopyranoside moiety was attached. Stille coupling of the glycosidated aglycon 128 with dienylstannane 129 furnished polycavernoside A in a synthesis for which the longest linear sequence was 25 steps. The overall yield to lactone 120 was 4.7%.


Subject(s)
Antibiotics, Antineoplastic/chemical synthesis , Disaccharides/chemical synthesis , Macrolides/chemical synthesis , Marine Toxins/chemical synthesis , Rhodophyta/chemistry , 4-Butyrolactone/analogs & derivatives , 4-Butyrolactone/chemistry , Carboxylic Acids/chemistry , Cyclization , Glycosylation , Molecular Structure , Oxidation-Reduction , Propionates/chemistry , Stereoisomerism , Vinyl Compounds/chemistry
4.
Biometals ; 18(6): 577-85, 2005 Dec.
Article in English | MEDLINE | ID: mdl-16388397

ABSTRACT

The siderophores of Bacillus anthracis are critical for the pathogen's proliferation and may be necessary for its virulence. Bacillus anthracis str. Sterne cells were cultured in iron free media and the siderophores produced were isolated and purified using a combination of XAD-2 resin, reverse-phase FPLC, and size exclusion chromatography. A combination of 1H and 13C NMR spectroscopy, UV spectroscopy and ESI-MS/MS fragmentation were used to identify the primary siderophore as petrobactin, a catecholate species containing unusual 3,4-dihydroxybenzoate moieties, previously only identified in extracts of Marinobacter hydrocarbonoclasticus. A secondary siderophore was observed and structural analysis of this species is consistent with that reported for bacillibactin, a siderophore observed in many species of bacilli. This is the first structural characterization of a siderophore from B. anthracis, as well as the first characterization of a 3,4-DHB containing catecholate in a pathogen.


Subject(s)
Bacillus anthracis/metabolism , Benzamides/metabolism , Iron/metabolism , Siderophores/biosynthesis , Bacillus anthracis/chemistry , Benzamides/chemistry , Benzamides/isolation & purification , Cells, Cultured , Esters/chemistry , Esters/isolation & purification , Esters/metabolism , Hydrolysis , Molecular Structure , Oligopeptides/chemistry , Oligopeptides/isolation & purification , Oligopeptides/metabolism , Sensitivity and Specificity , Siderophores/chemistry , Siderophores/isolation & purification , Species Specificity , Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization/methods
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