Key Laboratory of Tropical Marine Bio-resources and Ecology, Guangdong Key Laboratory of Marine Materia Medica, Innovation Academy of South China Sea Ecology and Environmental Engineering, South China Sea Institute of Oceanology, Chinese Academy of Sciences, 164 West Xingang Road, Guangzhou, 510301, China.
Sanya Institute of Oceanology Eco-Environmental Engineering, Yazhou Scientific Bay, Sanya, 572000, China.
Angew Chem Int Ed Engl. 2024 May 27;63(22):e202403365. doi: 10.1002/anie.202403365. Epub 2024 Mar 26.
Meroterpenoids of the ochraceopones family featuring a linear tetracyclic scaffold exhibit exceptional antiviral and anti-inflammatory activities. The biosynthetic pathway and chemical logic to generate this linear tetracycle, however, remain unknown. In this study, we identified and characterized all biosynthetic enzymes to afford ochraceopones and elucidated the complete biosynthetic pathway. We demonstrated that the linear tetracyclic scaffold of ochraceopones was derived from an angular tetracyclic precursor. A multifunctional cytochrome P450 OchH was validated to catalyze the free-radical-initiated carbon-carbon bond cleavage of the angular tetracycle. Then, a new carbon-carbon bond was verified to be constructed using a new aldolase OchL, which catalyzes an intramolecular aldol reaction to form the linear tetracycle. This carbon-carbon bond fragmentation and aldol reaction cascade features an unprecedented strategy for converting a common angular tetracycle to a distinctive linear tetracyclic scaffold in meroterpenoid biosynthesis.
具有线性四环骨架的灰酮类倍半萜类化合物表现出优异的抗病毒和抗炎活性。然而,这种线性四环的生物合成途径和化学逻辑仍然未知。在这项研究中,我们鉴定并表征了所有生物合成酶,以获得灰酮类化合物,并阐明了完整的生物合成途径。我们证明了灰酮类化合物的线性四环骨架来源于角型四环前体。多功能细胞色素 P450 OchH 被证实可以催化角型四环的自由基引发的碳-碳键断裂。然后,使用新的醛缩酶 OchL 验证了新的碳-碳键的构建,该酶催化分子内醛醇反应形成线性四环。这种碳-碳键断裂和醛醇反应级联反应为在倍半萜类生物合成中从常见的角型四环转化为独特的线性四环骨架提供了一种前所未有的策略。