Engineering the amoeba Dictyostelium discoideum for biosynthesis of a cannabinoid precursor and other polyketides

Reimer C, Kufs JE, Rautschek J, Regestein L, Valiante V, Hillmann F (2022)
Nature Biotechnology 40(5): 751-758.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
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Autor*in
Reimer, ChristinUniBi; Kufs, Johann E.UniBi ; Rautschek, Julia; Regestein, Lars; Valiante, Vito; Hillmann, Falk
Abstract / Bemerkung
Aromatic polyketides are natural polyphenolic compounds with a broad spectrum of pharmacological activities. Production of those metabolites in the model organisms Escherichia coli and Saccharomyces cerevisiae has been limited by the extensive cellular engineering needed for the coordinated biosynthesis of polyketides and their precursors. In contrast, the amoeba Dictyostelium discoideum is a native producer of secondary metabolites and harbors a wide, but largely unexplored, repertoire of genes for the biosynthesis of polyketides and terpenoids. Here we present D. discoideum as an advantageous chassis for the production of aromatic polyketides. By expressing its native and cognate plant polyketide synthase genes in D. discoideum, we demonstrate production of phlorocaprophenone, methyl-olivetol, resveratrol and olivetolic acid (OA), which is the central intermediate in the biosynthesis of cannabinoids. To facilitate OA synthesis, we further engineered an amoeba/plant inter-kingdom hybrid enzyme that produced OA from primary metabolites in two enzymatic steps, providing a shortcut in a synthetic cannabinoid pathway using the D. discoideum host system.
Erscheinungsjahr
2022
Zeitschriftentitel
Nature Biotechnology
Band
40
Ausgabe
5
Seite(n)
751-758
ISSN
1087-0156
eISSN
1546-1696
Page URI
https://pub.uni-bielefeld.de/record/2984107

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Reimer C, Kufs JE, Rautschek J, Regestein L, Valiante V, Hillmann F. Engineering the amoeba Dictyostelium discoideum for biosynthesis of a cannabinoid precursor and other polyketides. Nature Biotechnology. 2022;40(5):751-758.
Reimer, C., Kufs, J. E., Rautschek, J., Regestein, L., Valiante, V., & Hillmann, F. (2022). Engineering the amoeba Dictyostelium discoideum for biosynthesis of a cannabinoid precursor and other polyketides. Nature Biotechnology, 40(5), 751-758. https://doi.org/10.1038/s41587-021-01143-8
Reimer, Christin, Kufs, Johann E., Rautschek, Julia, Regestein, Lars, Valiante, Vito, and Hillmann, Falk. 2022. “Engineering the amoeba Dictyostelium discoideum for biosynthesis of a cannabinoid precursor and other polyketides”. Nature Biotechnology 40 (5): 751-758.
Reimer, C., Kufs, J. E., Rautschek, J., Regestein, L., Valiante, V., and Hillmann, F. (2022). Engineering the amoeba Dictyostelium discoideum for biosynthesis of a cannabinoid precursor and other polyketides. Nature Biotechnology 40, 751-758.
Reimer, C., et al., 2022. Engineering the amoeba Dictyostelium discoideum for biosynthesis of a cannabinoid precursor and other polyketides. Nature Biotechnology, 40(5), p 751-758.
C. Reimer, et al., “Engineering the amoeba Dictyostelium discoideum for biosynthesis of a cannabinoid precursor and other polyketides”, Nature Biotechnology, vol. 40, 2022, pp. 751-758.
Reimer, C., Kufs, J.E., Rautschek, J., Regestein, L., Valiante, V., Hillmann, F.: Engineering the amoeba Dictyostelium discoideum for biosynthesis of a cannabinoid precursor and other polyketides. Nature Biotechnology. 40, 751-758 (2022).
Reimer, Christin, Kufs, Johann E., Rautschek, Julia, Regestein, Lars, Valiante, Vito, and Hillmann, Falk. “Engineering the amoeba Dictyostelium discoideum for biosynthesis of a cannabinoid precursor and other polyketides”. Nature Biotechnology 40.5 (2022): 751-758.
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