Ferrier Research Institute, Victoria University of Wellington, Wellington, 6012, New Zealand.
Maurice Wilkins Centre for Molecular Biodiscovery, New Zealand.
Angew Chem Int Ed Engl. 2022 Dec 5;61(49):e202213364. doi: 10.1002/anie.202213364. Epub 2022 Nov 9.
Nodulisporic acids (NAs) are structurally complex potent antiinsectan indole diterpenes. We previously reported the biosynthetic gene cluster for these metabolites in Hypoxylon pulicicidum and functionally characterised the first five steps of the biosynthetic pathway. Here we reveal a highly complex biosynthetic array, furnishing multiple end products through expression of cluster components in Penicillium paxilli. We show that seven additional cluster-encoded gene products comprise the biosynthetic machinery that elaborate precursor NAF in this highly branched pathway. The combined action of these enzymes delivers 37 NA congeners including four major end products, NAA, NAA , NAA and NAA . The plethora of intermediates arises due to modification of the carboxylated prenyl tail by a single promiscuous P450 monooxygenase, NodJ, a pivotal branchpoint enzyme which produces four distinct biosynthetic products giving rise to the complex metabolic grid that characterises NA biosynthesis.
纳豆菌素酸(NAs)是结构复杂的强效抗昆虫吲哚二萜类化合物。我们之前曾报道过 Hypoxylon pulicicidum 中这些代谢物的生物合成基因簇,并对生物合成途径的前五个步骤进行了功能表征。在这里,我们揭示了一个高度复杂的生物合成阵列,通过在 Penicillium paxilli 中表达簇成分来提供多种终产物。我们表明,七个额外的簇编码基因产物组成了生物合成机制,在这个高度分支的途径中精心制作前体 NAF。这些酶的共同作用提供了 37 种 NA 同系物,包括四个主要终产物 NAA、NAA、NAA 和 NAA。由于单个混杂的 P450 单加氧酶 NodJ 对羧化的prenyl 尾进行修饰,产生了大量的中间体,NodJ 是一种关键的分支点酶,它产生了四个不同的生物合成产物,从而产生了复杂的代谢网格,这是 NA 生物合成的特征。