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Metabolic engineering of Saccharomyces cerevisiae for the biosynthesis of indole-derived compounds.

Created on 30 Sep 2026

Authors

Mengchu Sun, Xiaolin Shen, Xinxiao Sun, Jia Wang, Qipeng Yuan

Published in

Trends in biotechnology. Sep 29, 2026. Epub Sep 29, 2026.

Abstract

Indole-3-acetonitrile (IAN) and its derivatives-indole-3-carboxaldehyde (I3A), indole-3-carboxylic acid (I3CA), and 3,3'-diindolylmethane (DIM)-are high-value indole-derived compounds widely used in the chemical, pharmaceutical, and nutraceutical industries. However, their de novo microbial production has not yet been achieved. In this study, we constructed a Saccharomyces cerevisiae platform for the de novo biosynthesis of IAN and its downstream derivatives. Reconstruction and optimization of the native plant pathway enabled production of 189.02 mg/l IAN from glucose, and the pathway was subsequently extended to I3A and I3CA, reaching titers of 65.85 and 13.95 mg/l, respectively. Furthermore, an artificial biosynthetic route to DIM was constructed by identifying a previously uncharacterized I3A reductase, enabling the microbial production of DIM from glucose. This work establishes a microbial platform for de novo biosynthesis of IAN and its derivatives and demonstrates a general strategy for producing natural and nonnatural indole derivatives.

PMID:
42810891
Bibliographic data and abstract were imported from PubMed on 30 Sep 2026.

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