Key Laboratory of Saline-alkali Vegetation Ecology Restoration (Northeast Forestry University), Ministry of Education, Harbin 150040, China.
College of Life Science, Northeast Forestry University, Harbin, 150040, China.
Nat Prod Rep. 2024 Nov 13;41(11):1787-1810. doi: 10.1039/d4np00029c.
Covering: up to June 2024Benzylisoquinoline alkaloids (BIAs) represent a diverse class of plant specialized metabolites derived from L-tyrosine, exhibiting significant pharmacological properties such as anti-microbial, anti-spasmodic, anti-cancer, cardiovascular protection, and analgesic effects. The industrial production of valuable BIAs relies on extraction from plants; however, challenges concerning their low concentration and efficiency hinder drug development. Hence, alternative approaches, including biosynthesis and chemoenzymatic synthesis, have been explored. Model species like and have played a key role in unraveling the biosynthetic pathways of BIAs; however, many aspects, particularly modified steps like oxidation and methylation, remain unclear. Critical enzymes, , CYP450s and methyltransferases, play a substantial role in BIA backbone formation and modification, which is essential for understanding the origin and adaptive evolution of these plant specialized metabolites. This review comprehensively analyzes the structural diversity of reported BIAs and their distribution in plant lineages. In addition, the progress in understanding biosynthesis, evolution, and catalytic mechanisms underlying BIA biosynthesis is summarized. Finally, we discuss the progress and challenges in metabolic engineering, providing valuable insights into BIA drug development and the sustainable utilization of BIA-producing plants.
截至 2024 年 6 月
苯并异喹啉生物碱(BIAs)是一类来源于 L-酪氨酸的植物特化代谢产物,具有显著的药理活性,如抗菌、抗痉挛、抗癌、心血管保护和镇痛作用。有价值的 BIAs 的工业生产依赖于从植物中提取,但由于其浓度低和效率低的问题,阻碍了药物的开发。因此,包括生物合成和化学酶合成在内的替代方法已经被探索。 和 等模式物种在揭示 BIAs 的生物合成途径方面发挥了关键作用;然而,许多方面,特别是修饰步骤如氧化和甲基化,仍然不清楚。关键酶,CYP450s 和甲基转移酶,在 BIA 骨架形成和修饰中起着重要作用,这对于理解这些植物特化代谢物的起源和适应性进化至关重要。
本篇综述全面分析了已报道的 BIAs 的结构多样性及其在植物谱系中的分布。此外,还总结了对 BIA 生物合成的生物合成、进化和催化机制的理解进展。最后,我们讨论了代谢工程的进展和挑战,为 BIA 药物开发和 BIA 产生植物的可持续利用提供了有价值的见解。