Genomics-driven discovery of the biosynthetic gene cluster of maduramicin and its overproduction in Actinomadura sp. J1-007

Author:

Liu Ran1,Fang Fang1,An Ziheng1,Huang Renqiong1,Wang Yong1,Sun Xiao1,Fu Shuai2,Fu Aisi1,Deng Zixin134,Liu Tiangang14

Affiliation:

1. grid.49470.3e 0000 0001 2331 6153 Key Laboratory of Combinatorial Biosynthesis and Drug Discovery Ministry of Education and Wuhan University School of Pharmaceutical Sciences 430071 Wuhan China

2. J1 Biotech Co., Ltd 430075 Wuhan China

3. grid.16821.3c 0000 0004 0368 8293 State Key Laboratory of Microbial Metabolism, Joint International Research Laboratory of Metabolic and Developmental Sciences, and School of Life Sciences and Biotechnology Shanghai Jiao Tong University 200030 Shanghai China

4. grid.488186.b 0000000460662524 Hubei Engineering Laboratory for Synthetic Microbiology Wuhan Institute of Biotechnology 430075 Wuhan China

Abstract

Abstract Maduramicin is the most efficient and possesses the largest market share of all anti-coccidiosis polyether antibiotics (ionophore); however, its biosynthetic gene cluster (BGC) has yet to been identified, and the associated strains have not been genetically engineered. Herein, we performed whole-genome sequencing of a maduramicin-producing industrial strain of Actinomadura sp. J1-007 and identified its BGC. Additionally, we analyzed the identified BGCs in silico to predict the biosynthetic pathway of maduramicin. We then developed a conjugation method for the non-spore-forming Actinomadura sp. J1-007, consisting of a site-specific integration method for gene overexpression. The maduramicin titer increased by 30% to 7.16 g/L in shake-flask fermentation following overexpression of type II thioesterase MadTE that is the highest titer at present. Our findings provide insights into the biosynthetic mechanism of polyethers and provide a platform for the metabolic engineering of maduramicin-producing microorganisms for overproduction and development of maduramicin analogs in the future.

Funder

J1 Biotech Co., Ltd

Hubei Natural Science Fund Project

National Key R&D Program of China

Publisher

Oxford University Press (OUP)

Subject

Applied Microbiology and Biotechnology,Biotechnology,Bioengineering

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