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通过调控途径和培养基优化在草本真菌中克级生产巴拉诺醇

Gram-Level Production of Balanol through Regulatory Pathway and Medium Optimization in Herb Fungus .

作者信息

Li Rui-Qi, Liu Xiang, Zhang Min, Xu Wei-Qun, Li Yong-Quan, Chen Xin-Ai

机构信息

School of Medicine and the Children's Hospital, Zhejiang University, Hangzhou 310058, China.

Institute of Pharmaceutical Biotechnology, Zhejiang University, Hangzhou 310058, China.

出版信息

J Fungi (Basel). 2022 May 16;8(5):510. doi: 10.3390/jof8050510.

Abstract

As a potential protein kinase C inhibitor, the fungus metabolite balanol has become more attractive in recent decades. In our previous work, we revealed its biosynthetic pathway through overexpression of the cluster-situated regulator gene in Chinese herb fungus . However, information on the regulation of is still largely unknown. In this study, we further investigated the regulation of balanol biosynthesis by BlnR through the analysis of affinity binding using EMSA and RNA-seq analysis. The results showed that BlnR positively regulates balanol biosynthesis through binding to all promoters of gene members, including its own promoter. Microscopic observation revealed overexpression also affected spore development and hypha growth. Furthermore, RNA-seq analysis suggested that BlnR can regulate other genes outside of the balanol biosynthetic gene cluster, including those involved in conidiospore development. Finally, balanol production was further improved to 2187.39 mg/L using the optimized medium through statistical optimization based on response surface methodology.

摘要

作为一种潜在的蛋白激酶C抑制剂,真菌代谢产物巴拉诺醇在近几十年来变得更具吸引力。在我们之前的工作中,我们通过过表达中国草药真菌中位于簇中的调节基因揭示了其生物合成途径。然而,关于该调节的信息仍然知之甚少。在本研究中,我们通过使用电泳迁移率变动分析(EMSA)进行亲和结合分析和RNA测序分析,进一步研究了BlnR对巴拉诺醇生物合成的调节。结果表明,BlnR通过与基因成员的所有启动子结合,包括其自身的启动子,正向调节巴拉诺醇的生物合成。显微镜观察显示,过表达也影响孢子发育和菌丝生长。此外,RNA测序分析表明,BlnR可以调节巴拉诺醇生物合成基因簇之外的其他基因,包括那些参与分生孢子发育的基因。最后,通过基于响应面法的统计优化,使用优化培养基将巴拉诺醇产量进一步提高到2187.39 mg/L。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e12/9143294/2967a1a156f4/jof-08-00510-g001.jpg

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