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Machine learning discovery of missing links that mediate alternative branches to plant alkaloids

Nature Communications. 2022-03; 
Christopher J. Vavricka; Shunsuke Takahashi; Naoki Watanabe; Musashi Takenaka; Mami Matsuda; Takanobu Yoshida; Ryo Suzuki; Hiromasa Kiyota; Jianyong Li; Hiromichi Minami; Jun Ishii; Kenji Tsuge; Michihiro Araki; Akihiko Kondo; Tomohisa Hasunuma
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摘要

Engineering the microbial production of secondary metabolites is limited by the known reactions of correctly annotated enzymes. Therefore, the machine learning discovery of specialized enzymes offers great potential to expand the range of biosynthesis pathways. Benzylisoquinoline alkaloid production is a model example of metabolic engineering with potential to revolutionize the paradigm of sustainable biomanufacturing. Existing bacterial studies utilize a norlaudanosoline pathway, whereas plants contain a more stable norcoclaurine pathway, which is exploited in yeast. However, committed aromatic precursors are still produced using microbial enzymes that remain elusive in plants, and additional downstream missin... More

关键词

Enzymes, Synthetic biology, Metabolic engineering, Machine learning