College of Pharmaceutical Sciences, Southwest University, Chongqing, 400715, P. R. China.
Angew Chem Int Ed Engl. 2024 May 27;63(22):e202404000. doi: 10.1002/anie.202404000. Epub 2024 Apr 12.
Cytochrome P450 (CYP450)-catalyzed oxidative coupling is an efficient strategy for using simple building blocks to construct complex structural scaffolds of natural products. Among them, heterodimeric coupling between two different monomers is relatively scarce, and the corresponding CYP450s are largely undiscovered. In this study, we discovered a fungal CYP450 (CpsD) and its associated cps cluster from 37208 CYP450s of Pfam PF00067 family member database and subsequently identified a group of new skeleton indole piperazine alkaloids (campesines A-G) by combination of genome mining and heterologous synthesis. Importantly, CYP450 CpsD mainly catalyzes intermolecular oxidative heterocoupling of two different indole piperazine monomers to generate an unexpected 6/5/6/6/6/6/5/6 eight-ring scaffold through the formation of one C-C bond and two C-N bonds, illuminating its first dimerase role in this family of natural products. The proposed catalytic mechanism of CpsD was deeply investigated by diversified substrate derivatization. Moreover, dimeric campesine G shows good insecticidal activity against the global honeybee pest Galleria mellonella. Our study shows a representative example of discovering new skeleton monomeric and dimeric indole piperazine alkaloids from microbial resources, expands our knowledge of bond formation by CYP450s and supports further development of the newly discovered and engineered campesine family compounds as potential biopesticides.
细胞色素 P450(CYP450)-催化的氧化偶联是利用简单构建块构建天然产物复杂结构支架的有效策略。其中,两个不同单体之间的杂二聚体偶联相对较少,相应的 CYP450 也在很大程度上未被发现。在这项研究中,我们从 Pfam PF00067 家族成员数据库的 37208 个 CYP450 中发现了一种真菌 CYP450(CpsD)及其相关的 cps 簇,随后通过基因组挖掘和异源合成相结合,鉴定了一组新的骨架吲哚哌嗪生物碱(campesines A-G)。重要的是,CYP450 CpsD 主要催化两个不同吲哚哌嗪单体的分子间氧化杂二聚,通过形成一个 C-C 键和两个 C-N 键,生成一个意想不到的 6/5/6/6/6/6/5/6 八元环支架,揭示了其在该天然产物家族中的第一个二聚酶作用。通过多样化的底物衍生化,深入研究了 CpsD 的拟议催化机制。此外,二聚体 campesine G 对全球蜜蜂害虫大蜡螟表现出良好的杀虫活性。我们的研究展示了从微生物资源中发现新骨架单体和二聚吲哚哌嗪生物碱的代表性例子,扩展了我们对 CYP450 形成键的认识,并支持进一步开发新发现和工程化的 campesine 家族化合物作为潜在的生物农药。