Ferrier Research Institute, Victoria University of Wellington , Wellington 6012, New Zealand.
Biomolecular Interaction Centre, University of Canterbury , 20 Kirkwood Avenue, Christchurch 8041, New Zealand.
J Am Chem Soc. 2018 Jan 17;140(2):582-585. doi: 10.1021/jacs.7b10909. Epub 2018 Jan 8.
Nodulisporic acids comprise a group of valuable indole diterpenes that exhibit potent insecticidal activities. We report the identification of a gene cluster in the genome of the filamentous fungus Hypoxylon pulicicidum (Nodulisporium sp.) that contains genes responsible for the biosynthesis of nodulisporic acids. Using Penicillium paxilli as a heterologous host, and through pathway reconstitution experiments, we identified the function of four genes involved in the biosynthesis of the nodulisporic acid core compound, nodulisporic acid F (NAF). Two of these genes (nodM and nodW) are especially significant as they encode enzymes with previously unreported functionality: nodM encodes a 3-geranylgeranylindole epoxidase capable of catalyzing only a single epoxidation step to prime formation of the distinctive ring structure of nodulisporic acids, and nodW encodes the first reported gene product capable of introducing a carboxylic acid moiety to an indole diterpene core structure that acts as a reactive handle for further modification. Here, we present the enzymatic basis for the biosynthetic branch point that gives rise to nodulisporic acids.
诺多利酸是一类具有重要价值的吲哚二萜类化合物,具有很强的杀虫活性。我们在丝状真菌Hypoxylon pulicicidum(Nodulisporium sp.)的基因组中鉴定出一个基因簇,该基因簇包含负责诺多利酸生物合成的基因。我们使用青霉作为异源宿主,并通过途径重建实验,鉴定了参与诺多利酸核心化合物诺多利酸 F(NAF)生物合成的四个基因的功能。其中两个基因(nodM 和 nodW)特别重要,因为它们编码的酶具有以前未报道的功能:nodM 编码一种 3-香叶基-香叶基吲哚环氧化物酶,能够仅催化单步环氧化反应,为诺多利酸独特的环结构的形成奠定基础,而 nodW 编码的第一个报道的基因产物能够向吲哚二萜核心结构中引入羧酸部分,作为进一步修饰的反应性手性。在这里,我们提出了导致诺多利酸生物合成分支点的酶学基础。