Literature DB >> 24037307

Construction of engineered Arthrobacter simplex with improved performance for cortisone acetate biotransformation.

Huitu Zhang1, Yao Tian, Jianling Wang, Yonghai Li, Haikuan Wang, Shuhong Mao, Xiaoguang Liu, Chunxia Wang, Songtao Bie, Fuping Lu.   

Abstract

Arthrobacter simplex 156 is a microorganism that is used for steroid drug biotransformation of cortisone acetate (CA) to prednisone acetate (PA). The enzyme 3-ketosteroid-△(1)-dehydrogenase encoded by the ksdD gene plays an important role in the bioconversion process. To further improve the biotransformation efficiencies of the industrial strain, a genetic manipulation system for A. simplex 156 was developed. Additional copies of the ksdD gene under the control of the cat promoter (from pXMJ19) were transferred into the strain A. simplex 156 and integrated into the 16S rDNA sites, yielding a series of recombinant strains. One of these recombinant strains, designated A. simplex M158, exhibited superior properties for CA biotransformation. At the substrate concentration of 83.6 g/l, the highest PA production of the recombinant strain reached 66.7 g/l, which is approximately 32.9 % higher than that of wild-type strains, and the incubation time for CA to PA bioconversion was reduced by 20 h. Southern blotting analysis of the recombinant strain indicated two copies of deregulated ksdD genes were integrated into the 16S rDNA sites, which means two of five 16S rRNA operons were insertionally disrupted in the recombinant strain. However, the disruption of the two 16S rRNA operons did not affect the growth rate of the recombinant strain, which survived and thrived under desired conditions. In addition, the new strain was genetically stable for more than 100 generations without the use of antibiotics for selection. These superior characteristics make the new strain more suitable than the wild-type strain for PA production.

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Year:  2013        PMID: 24037307     DOI: 10.1007/s00253-013-5172-7

Source DB:  PubMed          Journal:  Appl Microbiol Biotechnol        ISSN: 0175-7598            Impact factor:   4.813


  7 in total

1.  Engineering of a Bacillus amyloliquefaciens Strain with High Neutral Protease Producing Capacity and Optimization of Its Fermentation Conditions.

Authors:  Hui Wang; Lian Yang; Yanhai Ping; Yingguo Bai; Huiying Luo; Huoqing Huang; Bin Yao
Journal:  PLoS One       Date:  2016-01-11       Impact factor: 3.240

2.  Different genome-wide transcriptome responses of Nocardioides simplex VKM Ac-2033D to phytosterol and cortisone 21-acetate.

Authors:  Victoria Yu Shtratnikova; Mikhail I Sсhelkunov; Victoria V Fokina; Eugeny Y Bragin; Andrey A Shutov; Marina V Donova
Journal:  BMC Biotechnol       Date:  2021-01-13       Impact factor: 2.563

3.  Universal capability of 3-ketosteroid Δ1-dehydrogenases to catalyze Δ1-dehydrogenation of C17-substituted steroids.

Authors:  Patrycja Wójcik; Michał Glanowski; Agnieszka M Wojtkiewicz; Ali Rohman; Maciej Szaleniec
Journal:  Microb Cell Fact       Date:  2021-06-23       Impact factor: 5.328

Review 4.  New Insights on Steroid Biotechnology.

Authors:  Lorena Fernández-Cabezón; Beatriz Galán; José L García
Journal:  Front Microbiol       Date:  2018-05-15       Impact factor: 5.640

5.  Δ1-Dehydrogenation and C20 Reduction of Cortisone and Hydrocortisone Catalyzed by Rhodococcus Strains.

Authors:  Stefania Costa; Federico Zappaterra; Daniela Summa; Bruno Semeraro; Giancarlo Fantin
Journal:  Molecules       Date:  2020-05-07       Impact factor: 4.411

6.  Engineering of 3-ketosteroid-∆1-dehydrogenase based site-directed saturation mutagenesis for efficient biotransformation of steroidal substrates.

Authors:  Shuhong Mao; Jian-Wen Wang; Fufeng Liu; Zhangliang Zhu; Dengke Gao; Qianqian Guo; Panpan Xu; Zheng Ma; Yali Hou; Xiaotao Cheng; Dengyue Sun; Fuping Lu; Hui-Min Qin
Journal:  Microb Cell Fact       Date:  2018-09-10       Impact factor: 5.328

7.  A New 3-Ketosteroid-Δ1-Dehydrogenase with High Activity and Broad Substrate Scope for Efficient Transformation of Hydrocortisone at High Substrate Concentration.

Authors:  Yu Wang; Rui Zhang; Jinhui Feng; Qiaqing Wu; Dunming Zhu; Yanhe Ma
Journal:  Microorganisms       Date:  2022-02-25
  7 in total

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