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Elucidation of the 1-phenethylisoquinoline pathway from an endemic conifer Cephalotaxus hainanensis .

Fei QiaoYuedong HeYuhao ZhangXuefei JiangHanqing CongZhiming WangHuapeng SunYibei XiaoYucheng ZhaoPeter Nick
Published in: Proceedings of the National Academy of Sciences of the United States of America (2022)
Cephalotaxines harbor great medical potential, but their natural source, the endemic conifer Cephalotaxus is highly endangered, creating a conflict between biotechnological valorization and preservation of biodiversity. Here, we construct the whole biosynthetic pathway to the 1-phenethylisoquinoline scaffold, as first committed compound for phenylethylisoquinoline alkaloids (PIAs), combining metabolic modeling, and transcriptome mining of  Cephalotaxus hainanensis to infer the biosynthesis for PIA precursor. We identify a novel protein, Ch PSS, driving the Pictet-Spengler condensation and show that this enzyme represents the branching point where PIA biosynthesis diverges from the concurrent benzylisoquinoline-alkaloids pathway. We also pinpoint Ch DBR as crucial step to form 4-hydroxydihydrocinnamaldehyde diverging from lignin biosynthesis. The elucidation of the early PIA pathway represents an important step toward microbe-based production of these pharmaceutically important alkaloids resolving the conflict between biotechnology and preservation of biodiversity.
Keyphrases
  • healthcare
  • squamous cell carcinoma
  • radiation therapy
  • cell wall
  • climate change
  • rna seq
  • ionic liquid
  • dna methylation
  • protein protein