1. Academic Validation
  2. Component Optimization of Neomycin Biosynthesis via the Reconstitution of a Combinatorial Mini-Gene-Cluster in Streptomyces fradiae

Component Optimization of Neomycin Biosynthesis via the Reconstitution of a Combinatorial Mini-Gene-Cluster in Streptomyces fradiae

  • ACS Synth Biol. 2020 Sep 18;9(9):2493-2501. doi: 10.1021/acssynbio.0c00281.
Jiazhen Zheng 1 2 Yue Li 1 Hanye Guan 1 2 Junyue Li 1 2 Dong Li 1 Jihui Zhang 1 Huarong Tan 1 2
Affiliations

Affiliations

  • 1 State Key Laboratory of Microbial Resources, Institute of Microbiology, Chinese Academy of Sciences, Beijing 100101, China.
  • 2 College of Life Sciences, University of the Chinese Academy of Sciences, Beijing 100049, China.
Abstract

Neomycin, a multicomponent Aminoglycoside antibiotic, is mainly utilized in livestock husbandry and feed additives in Animals. The antimicrobial potency of the main product neomycin B is higher than that of its stereoisomer neomycin C. However, the content of neomycin C as an impurity in the high-producing strain is relatively high, and its isolation or removal from neomycin B is quite difficult, which influences the widespread application of neomycin. In this work, the essential genes responsible for neomycin biosynthesis were evaluated and overexpressed to reduce the content of neomycin C. Among them, neoG and neoH are two novel regulatory genes for neomycin biosynthesis, aphA is a resistance gene, neoN encoding a radical SAM-dependent epimerase is responsible for the conversion of neomycin C to B using SAM as the cofactor, and metK is a SAM synthetase coding gene. We demonstrated that the reconstitution and overexpression of a mini-gene-cluster (PkasO*-neoN-metK-PkasO*-neoGH-aphA) could effectively reduce the accumulation of neomycin C from 19.1 to 12.7% and simultaneously increase neomycin B by ∼13.1% in the engineered strain Sf/pKCZ04 compared with the wild-type strain (Sf). Real-time quantitative polymerase chain reaction analysis revealed the remarkable up-regulation of the neoE, neoH, neoN, and metK genes situated in the mini-gene-cluster. The findings will pave a new path for component optimization and the large-scale industrial production of significant commercial Antibiotics.

Keywords

Streptomyces fradiae; component optimization; impurity; mini-gene-cluster reconstitution; neomycin C.

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