» Articles » PMID: 31713669

Enhancement of FK520 Production in Streptomyces Hygroscopicus by Combining Traditional Mutagenesis with Metabolic Engineering

Overview
Date 2019 Nov 13
PMID 31713669
Citations 11
Authors
Affiliations
Soon will be listed here.
Abstract

FK520 (ascomycin), a 23-membered macrolide with immunosuppressive activity, is produced by Streptomyces hygroscopicus. The problem of low yield and high impurities (mainly FK523) limits the industrialized production of FK520. In this study, the FK520 yield was significantly improved by strain mutagenesis and genetic engineering. First, a FK520 high-producing strain SFK-6-33 (2432.2 mg/L) was obtained from SFK-36 (1588.4 mg/L) through ultraviolet radiation mutation coupled with streptomycin resistance screening. The endogenous crotonyl-CoA carboxylase/reductase (FkbS) was found to play an important role in FK520 biosynthesis, identified with CRISPR/dCas9 inhibition system. FkbS was overexpressed in SFK-6-33 to obtain the engineered strain SFK-OfkbS, which produced 2817.0 mg/L of FK520 resulting from an increase in intracellular ethylmalonyl-CoA levels. In addition, the FK520 levels could be further increased with supplementation of crotonic acid in SFK-OfkbS. Overexpression of acetyl-CoA carboxylase (ACCase), used for the synthesis of malonyl-CoA, was also investigated in SFK-6-33, which improved the FK520 yield to 3320.1 mg/L but showed no significant inhibition in FK523 production. To further enhance FK520 production, FkbS and ACCase combinatorial overexpression strain SFK-OASN was constructed; the FK520 production increased by 44.4% to 3511.4 mg/L, and the FK523/FK520 ratio was reduced from 9.6 to 5.6% compared with that in SFK-6-33. Finally, a fed-batch culture was carried out in a 5-L fermenter, and the FK520 yield reached 3913.9 mg/L at 168 h by feeding glycerol, representing the highest FK520 yield reported thus far. These results demonstrated that traditional mutagenesis combined with metabolic engineering was an effective strategy to improve FK520 production.

Citing Articles

Enhancement of FK520 production in Streptomyces hygroscopicus var. ascomyceticus ATCC 14891 by overexpressing the regulatory gene fkbR2.

Xiao X, Fu Y, Zhang D, Gao S Bioprocess Biosyst Eng. 2025; 48(3):493-507.

PMID: 39775883 DOI: 10.1007/s00449-024-03124-y.


Insights into the roles of exogenous phenylalanine and tyrosine in improving rapamycin production of Streptomyces rapamycinicus with transcriptome analysis.

Xu D, Wang Y, Li H, Wang B, Chai L, Feng L Microb Cell Fact. 2024; 23(1):350.

PMID: 39741275 PMC: 11689663. DOI: 10.1186/s12934-024-02632-6.


Enhanced triacylglycerol metabolism contributes to the efficient biosynthesis of spinosad in .

Cao L, Liu Y, Sun L, Zhu Z, Yang D, Xia Z Synth Syst Biotechnol. 2024; 9(4):809-819.

PMID: 39072147 PMC: 11277812. DOI: 10.1016/j.synbio.2024.06.007.


Mechanistic insight for improving butenyl-spinosyn production through combined ARTP/UV mutagenesis and ribosome engineering in .

Zhao X, Hussain M, Mohsin A, Liu Z, Xu Z, Li Z Front Bioeng Biotechnol. 2024; 11:1329859.

PMID: 38292303 PMC: 10825966. DOI: 10.3389/fbioe.2023.1329859.


Development of a native-locus dual reporter system for the efficient screening of the hyper-production of natural products in .

Zhou J, Ma B, Zhao Q, Mao X Front Bioeng Biotechnol. 2023; 11:1225849.

PMID: 37456716 PMC: 10343952. DOI: 10.3389/fbioe.2023.1225849.