Production of the sesquiterpenoid (+)-nootkatone by metabolic engineering of Pichia pastoris

The sesquiterpenoid (+)-nootkatone is a highly demanded and highly valued aroma compound naturally found in grapefruit, pummelo or Nootka cypress tree. Extraction of (+)-nootkatone from plant material or its production by chemical synthesis suffers from low yields and the use of environmentally harm...

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Veröffentlicht in:Metabolic engineering 2014-07, Vol.24, p.18-29
Hauptverfasser: Wriessnegger, Tamara, Augustin, Peter, Engleder, Matthias, Leitner, Erich, Müller, Monika, Kaluzna, Iwona, Schürmann, Martin, Mink, Daniel, Zellnig, Günther, Schwab, Helmut, Pichler, Harald
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Sprache:eng
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Zusammenfassung:The sesquiterpenoid (+)-nootkatone is a highly demanded and highly valued aroma compound naturally found in grapefruit, pummelo or Nootka cypress tree. Extraction of (+)-nootkatone from plant material or its production by chemical synthesis suffers from low yields and the use of environmentally harmful methods, respectively. Lately, major attention has been paid to biotechnological approaches, using cell extracts or whole-cell systems for the production of (+)-nootkatone. In our study, the yeast Pichia pastoris initially was applied as whole-cell biocatalyst for the production of (+)-nootkatone from (+)-valencene, the abundant aroma compound of oranges. Therefore, we generated a strain co-expressing the premnaspirodiene oxygenase of Hyoscyamus muticus (HPO) and the Arabidopsis thaliana cytochrome P450 reductase (CPR) that hydroxylated extracellularly added (+)-valencene. Intracellular production of (+)-valencene by co-expression of valencene synthase from Callitropsis nootkatensis resolved the phase-transfer issues of (+)-valencene. Bi-phasic cultivations of P. pastoris resulted in the production of trans-nootkatol, which was oxidized to (+)-nootkatone by an intrinsic P. pastoris activity. Additional overexpression of a P. pastoris alcohol dehydrogenase and truncated hydroxy-methylglutaryl-CoA reductase (tHmg1p) significantly enhanced the (+)-nootkatone yield to 208mgL−1 cell culture in bioreactor cultivations. Thus, metabolically engineered yeast P. pastoris represents a valuable, whole-cell system for high-level production of (+)-nootkatone from simple carbon sources. [Display omitted] •A self-sufficient, whole-cell system for (+)-nootkatone production in Pichia pastoris.•Metabolic engineering enhanced (+)-nootkatone yield to 208mgL−1 cell culture.•P. pastoris is proposed as promising, novel host for sesquiterpenoid production.
ISSN:1096-7176
1096-7184
DOI:10.1016/j.ymben.2014.04.001