Key Laboratory of Crop Gene Resources and Germplasm Enhancement in Southern China, ministry of Agriculture; Tropical Crops Genetic Resources Institute, Chinese Academy of Tropical Agricultural Sciences, Haikou 571101, China.
College of Horticulture, Hunan Agricultural University, Changsha 410128, China.
Proc Natl Acad Sci U S A. 2023 Jan 3;120(1):e2209339120. doi: 10.1073/pnas.2209339120. Epub 2022 Dec 28.
Cephalotaxines harbor great medical potential, but their natural source, the endemic conifer 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 to infer the biosynthesis for PIA precursor. We identify a novel protein, 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 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.
三尖杉属植物具有巨大的医学潜力,但它们的天然来源,即特有针叶树,处于高度濒危状态,这在生物技术利用和生物多样性保护之间造成了冲突。在这里,我们构建了整个 1-苯乙基异喹啉支架的生物合成途径,这是苯乙基异喹啉生物碱(PIAs)的第一个目标化合物,结合代谢建模和 转录组挖掘,推断 PIA 前体的生物合成。我们鉴定了一种新型蛋白 PSS,它驱动 Pictet-Spengler 缩合,并表明该酶代表了 PIA 生物合成从同时发生的苄基异喹啉-生物碱途径分叉的分支点。我们还确定了 DBR 是形成 4-羟基二氢肉桂醛的关键步骤,该步骤与木质素生物合成不同。早期 PIA 途径的阐明代表了朝着基于微生物生产这些具有重要药用价值的生物碱迈出的重要一步,解决了生物技术利用和生物多样性保护之间的冲突。