Multiplex Base-Editing Enables Combinatorial Epigenetic Regulation for Genome Mining of Fungal Natural Products

表观遗传学 基因组 多路复用 基因 计算生物学 巢状曲霉 基因组编辑 转座因子 生物 遗传学 化学 突变体
作者
Fanglong Zhao,Chunxiao Sun,Zhiwen Liu,Alan Cabrera,Mario Escobar,Shunyu Huang,Qichen Yuan,Qiuyue Nie,Kevin Lee Luo,Angela E. Lin,Jeffrey A. Vanegas,Tong Zhu,Isaac B. Hilton,Xue Gao
出处
期刊:Journal of the American Chemical Society [American Chemical Society]
卷期号:145 (1): 413-421 被引量:33
标识
DOI:10.1021/jacs.2c10211
摘要

Genome mining of cryptic natural products (NPs) remains challenging, especially in filamentous fungi, owing to their complex genetic regulation. Increasing evidence indicates that several epigenetic modifications often act cooperatively to control fungal gene transcription, yet the ability to predictably manipulate multiple genes simultaneously is still largely limited. Here, we developed a multiplex base-editing (MBE) platform that significantly improves the capability and throughput of fungal genome manipulation, leading to the simultaneous inactivation of up to eight genes using a single transformation. We then employed MBE to inactivate three negative epigenetic regulators combinatorially in Aspergillus nidulans, enabling the activation of eight cryptic gene clusters compared to the wild-type strains. A group of novel NPs harboring unique cichorine and polyamine hybrid chemical scaffolds were identified, which were not reported previously. We envision that our scalable and efficient MBE platform can be readily applied in other filamentous fungi for the genome mining of novel NPs, providing a powerful approach for the exploitation of fungal chemical diversity.
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