Literature DB >> 19472250

Identification of OxyE as an ancillary oxygenase during tetracycline biosynthesis.

Peng Wang1, Wenjun Zhang, Jixun Zhan, Yi Tang.   

Abstract

The double hydroxylation of 6-pretetramid to 4-keto-anhydrotetracycline is a key tailoring reaction during the biosynthesis of the broad-spectrum antibiotic tetracyclines. It has been shown previously by heterologous reconstitution that OxyL is a dioxygenase and is the only enzyme required to catalyze the insertion of oxygen atoms at the C-12a and C-4 positions. We report here that OxyE, a flavin adenine dinucleotide (FAD)-dependent hydroxylase homologue, is an ancillary mono-oxygenase for OxyL during oxytetracycline biosynthesis in Streptomyces rimosus. By using both gene disruption and heterologous reconstitution approaches, we demonstrated that OxyE plays a nonessential, but important role in oxytetracycline biosynthesis by serving as a more efficient C-4 hydroxylase. In addition, we demonstrated that partially oxidized biosynthetic intermediates can undergo various glycosylation modifications in S. rimosus. Our results indicate that the synergistic actions of OxyE and OxyL in the double hydroxylation step prevent accumulation of shunt products during oxytetracycline biosynthesis in S. rimosus.

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Year:  2009        PMID: 19472250     DOI: 10.1002/cbic.200900122

Source DB:  PubMed          Journal:  Chembiochem        ISSN: 1439-4227            Impact factor:   3.164


  11 in total

Review 1.  Synthetic biology of antimicrobial discovery.

Authors:  Bijan Zakeri; Timothy K Lu
Journal:  ACS Synth Biol       Date:  2012-12-04       Impact factor: 5.110

Review 2.  Oxytetracycline biosynthesis.

Authors:  Lauren B Pickens; Yi Tang
Journal:  J Biol Chem       Date:  2010-06-03       Impact factor: 5.157

Review 3.  Biosynthesis of Oxytetracycline by Streptomyces rimosus:
Past, Present and Future Directions in the Development
of Tetracycline Antibiotics.

Authors:  Hrvoje Petković; Tadeja Lukežič; Jagoda Šušković
Journal:  Food Technol Biotechnol       Date:  2017-03       Impact factor: 3.918

4.  Selective C9orf72 G-Quadruplex-Binding Small Molecules Ameliorate Pathological Signatures of ALS/FTD Models.

Authors:  Aifang Cheng; Changdong Liu; Wenkang Ye; Duli Huang; Weiyi She; Xin Liu; Chun Po Fung; Naining Xu; Monica Ching Suen; Wei Ye; Herman Ho Yung Sung; Ian Duncan Williams; Guang Zhu; Pei-Yuan Qian
Journal:  J Med Chem       Date:  2022-09-15       Impact factor: 8.039

5.  High-Titer Production of the Fungal Anhydrotetracycline, TAN-1612, in Engineered Yeasts.

Authors:  Pedro A Baldera-Aguayo; Arden Lee; Virginia W Cornish
Journal:  ACS Synth Biol       Date:  2022-06-14       Impact factor: 5.249

6.  Characterization of tetracycline modifying enzymes using a sensitive in vivo reporter system.

Authors:  Zhou Yu; Sean E Reichheld; Leslie Cuthbertson; Justin R Nodwell; Alan R Davidson
Journal:  BMC Biochem       Date:  2010-09-11       Impact factor: 4.059

7.  Analysis and refactoring of the A-74528 biosynthetic pathway.

Authors:  Jay T Fitzgerald; Louise K Charkoudian; Katharine R Watts; Chaitan Khosla
Journal:  J Am Chem Soc       Date:  2013-03-04       Impact factor: 15.419

8.  Identification of a cluster-situated activator of oxytetracycline biosynthesis and manipulation of its expression for improved oxytetracycline production in Streptomyces rimosus.

Authors:  Shouliang Yin; Weishan Wang; Xuefeng Wang; Yaxin Zhu; Xiaole Jia; Shanshan Li; Fang Yuan; Yuxiu Zhang; Keqian Yang
Journal:  Microb Cell Fact       Date:  2015-04-02       Impact factor: 5.328

9.  The Tetracycline Destructases: A Novel Family of Tetracycline-Inactivating Enzymes.

Authors:  Kevin J Forsberg; Sanket Patel; Timothy A Wencewicz; Gautam Dantas
Journal:  Chem Biol       Date:  2015-06-18

10.  CtcS, a MarR family regulator, regulates chlortetracycline biosynthesis.

Authors:  Lingxin Kong; Jia Liu; Xiaoqing Zheng; Zixin Deng; Delin You
Journal:  BMC Microbiol       Date:  2019-12-10       Impact factor: 3.605

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