Structural characterization of novel extracellular liamocins (mannitol oils) produced by Aureobasidium pullulans strain NRRL 50380

[Display omitted] ► The structures of 4 novel compounds called liamocins are reported. ► Liamocins are mannitol-linked 3,5-dihydroxydecanoic polyesters. ► Novel exophilins, unsubstituted 3,5-dihydroxydecanoic polyesters, were also found. ► These biomaterials are produced by Aureobasidium, a commerci...

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Veröffentlicht in:Carbohydrate research 2013-04, Vol.370, p.24-32
Hauptverfasser: Price, Neil P.J., Manitchotpisit, Pennapa, Vermillion, Karl E., Bowman, Michael J., Leathers, Timothy D.
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Sprache:eng
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Zusammenfassung:[Display omitted] ► The structures of 4 novel compounds called liamocins are reported. ► Liamocins are mannitol-linked 3,5-dihydroxydecanoic polyesters. ► Novel exophilins, unsubstituted 3,5-dihydroxydecanoic polyesters, were also found. ► These biomaterials are produced by Aureobasidium, a commercially-used yeast strain. Aureobasidium pullulans is a common, ubiquitous fungus, which is used industrially to produce the polysaccharide pullulan. We have previously shown that A. pullulans produces various heavier-than-water oils, first named here as liamocins, that accumulate in fermentations. Here we report the structural characterization of four liamocins, A1, A2, B1, and B2, produced by A. pullulans strain NRRL 50380 using a combination of MALDI-TOF/MS, quadrupole-TOF/MS, isotopic labeling, NMR, GC/MS, and classical carbohydrate analysis. The data showed that the liamocins are composed of a single mannitol headgroup partially O-acylated with three (for liamocin A1 and A2) or four (for liamocin B1 and B2) 3,5-dihydroxydecanoic ester groups. Liamocins A1 and B1 are non-acetylated, whereas A2 and B2 each contain a single 3′-O-acetyl group. Each of these compounds is characterized by pseudomolecular [M+Na]+ ions in the MALDI-TOF/MS spectra at m/z 763.22, 949.35, 805.22, and 991.37, respectively. The 186Da mass difference between A-type and B-type liamocins corresponds to one O-linked 3,5-dihydroxydecanoate group. HMBC NMR showed that one 3,5-dihydroxydecanoate carbonyl group is ester linked to a primary hydroxyl on the mannitol. Other long range 13C–1H couplings across 1,5-ester bridges showed that the 3,5-dihydroxydecanoate groups form 1–5-linked polyester chains, similar in structure to the antibiotic substance exophilin A. Moreover, the MS analysis identified several non-conjugated poly-3,5-dihydroxydecanoate esters as minor components that are tentatively assigned as exophilins A1, A2, B1, and B2. The liamocins, and three of the exophilins, are new, previously unreported structures.
ISSN:0008-6215
1873-426X
DOI:10.1016/j.carres.2013.01.014