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在烟曲霉共生菌中,laeA基因的过表达导致环匹阿尼酸产量增加。

Overexpression of the laeA gene leads to increased production of cyclopiazonic acid in Aspergillus fumisynnematus.

作者信息

Hong Eun Jin, Kim Na Kyeong, Lee Doyup, Kim Won Gon, Lee Inhyung

机构信息

Department of Bio and Fermentation Convergence Technology, Kookmin University, Seoul 136-702, Republic of Korea.

Functional Metabolite Research Center, Korea Research Institute of Bioscience and Biotechnology, Yuseong, Daejeon 305-806, Republic of Korea.

出版信息

Fungal Biol. 2015 Nov;119(11):973-983. doi: 10.1016/j.funbio.2015.06.006. Epub 2015 Jun 23.

Abstract

To explore novel bioactive compounds produced via activation of secondary metabolite (SM) gene clusters, we overexpressed an ortholog of laeA, a gene that encodes a global positive regulator of secondary metabolism in Aspergillus fumisynnematus F746. Overexpression of the laeA gene under the alcA promoter resulted in the production of less pigment, shorter conidial head chains, and fewer conidia. Thin-layer chromatography (TLC) and high-performance liquid chromatography (HPLC) analysis revealed that SM production in OE::laeA was significantly increased, and included new metabolites that were not detected in the wild type. Among them, a compound named F1 was selected on the basis of its high production levels and antibacterial effects. F1 was purified by column chromatography and preparative TLC and identified as cyclopiazonic acid (CPA) by LC/MS, which had been previously known as mycotoxin. As A. fumisynnematus was not known to produce CPA, these results suggest that overexpression of the laeA gene can be used to explore the synthesis of useful bioactive compounds, even in a fungus for which the genome sequence is unavailable.

摘要

为了探索通过激活次生代谢产物(SM)基因簇产生的新型生物活性化合物,我们过表达了laeA的一个直系同源基因,laeA是一种编码烟曲霉F746中次生代谢全局正调控因子的基因。在alcA启动子控制下过表达laeA基因导致色素产生减少、分生孢子头链变短以及分生孢子数量减少。薄层色谱(TLC)和高效液相色谱(HPLC)分析表明,OE::laeA中次生代谢产物的产量显著增加,并且包括在野生型中未检测到的新代谢产物。其中,基于其高产量和抗菌作用选择了一种名为F1的化合物。F1通过柱色谱和制备型TLC进行纯化,并通过液相色谱/质谱(LC/MS)鉴定为环匹阿尼酸(CPA),其以前被认为是一种霉菌毒素。由于此前未知烟曲霉能产生CPA,这些结果表明,即使在基因组序列不可用的真菌中,过表达laeA基因也可用于探索有用生物活性化合物的合成。

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