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来自不动苯基杆菌E DSM 1986的 Rieske非血红素铁加氧酶多组分系统的组装能够在大肠杆菌中实现吡草酮顺式二羟基化。

Assembly of a Rieske non-heme iron oxygenase multicomponent system from Phenylobacterium immobile E DSM 1986 enables pyrazon cis-dihydroxylation in E. coli.

作者信息

Hunold Andreas, Escobedo-Hinojosa Wendy, Potoudis Elsa, Resende Daniela, Farr Theresa, Syrén Per-Olof, Hauer Bernhard

机构信息

Institute of Biochemistry and Technical Biochemistry, Department of Technical Biochemistry, University of Stuttgart, Allmandring 31, 70569, Stuttgart, Germany.

School of Chemical Science and Engineering, Division of Applied Physical Chemistry, KTH Royal Institute of Technology, 100 44, Stockholm, Sweden.

出版信息

Appl Microbiol Biotechnol. 2021 Mar;105(5):2003-2015. doi: 10.1007/s00253-021-11129-w. Epub 2021 Feb 13.

Abstract

Phenylobacterium immobile strain E is a soil bacterium with a striking metabolism relying on xenobiotics, such as the herbicide pyrazon, as sole carbon source instead of more bioavailable molecules. Pyrazon is a heterocyclic aromatic compound of environmental concern and its biodegradation pathway has only been reported in P. immobile. The multicomponent pyrazon oxygenase (PPO), a Rieske non-heme iron oxygenase, incorporates molecular oxygen at the 2,3 position of the pyrazon phenyl moiety as first step of degradation, generating a cis-dihydrodiendiol. The aim of this work was to identify the genes encoding for each one of the PPO components and enable their functional assembly in Escherichia coli. P. immobile strain E genome sequencing revealed genes encoding for RO components, such as ferredoxin-, reductase-, α- and β-subunits of an oxygenase. Though, P. immobile E displays three prominent differences with respect to the ROs currently characterized: (1) an operon-like organization for PPO is absent, (2) all the elements are randomly scattered in its DNA, (3) not only one, but 19 different α-subunits are encoded in its genome. Herein, we report the identification of the PPO components involved in pyrazon cis-dihydroxylation in P. immobile, its appropriate assembly, and its functional reconstitution in E. coli. Our results contributes with the essential missing pieces to complete the overall elucidation of the PPO from P. immobile. KEY POINTS: • Phenylobacterium immobile E DSM 1986 harbors the only described pyrazon oxygenase (PPO). • We elucidated the genes encoding for all PPO components. • Heterologous expression of PPO enabled pyrazon dihydroxylation in E. coli JW5510.

摘要

不动苯基杆菌E菌株是一种土壤细菌,具有独特的代谢方式,它依赖除草剂吡草酮等外源化合物作为唯一碳源,而非更易利用的生物分子。吡草酮是一种受环境关注的杂环芳香化合物,其生物降解途径仅在不动苯基杆菌中有报道。多组分吡草酮加氧酶(PPO)是一种 Rieske 非血红素铁加氧酶,在吡草酮降解的第一步将分子氧引入吡草酮苯基部分的2,3位,生成顺式二氢二醇。本研究的目的是鉴定编码PPO各组分的基因,并使其在大肠杆菌中实现功能组装。不动苯基杆菌E菌株的基因组测序揭示了编码RO组分的基因,如铁氧化还原蛋白、还原酶、加氧酶的α和β亚基。然而,不动苯基杆菌E与目前已表征的ROs有三个显著差异:(1)不存在类似操纵子的PPO组织形式;(2)所有元件随机分散在其DNA中;(3)其基因组中不仅编码一种,而是19种不同的α亚基。在此,我们报告了在不动苯基杆菌中参与吡草酮顺式二羟基化的PPO组分的鉴定、其适当组装以及在大肠杆菌中的功能重建。我们的结果为完成对不动苯基杆菌PPO的全面阐明提供了关键的缺失部分。要点:• 不动苯基杆菌E DSM 1986含有唯一已描述的吡草酮加氧酶(PPO)。• 我们阐明了所有PPO组分的编码基因。• PPO的异源表达使大肠杆菌JW5510能够进行吡草酮二羟基化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba81/7907043/b47d7baeca96/253_2021_11129_Fig1_HTML.jpg

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