首页> 外文期刊>Applied Microbiology >Discovery of an Inducible Toluene Monooxygenase That Cooxidizes 1,4-Dioxane and 1,1-Dichloroethylene in Propanotrophic Azoarcus sp. Strain DD4
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Discovery of an Inducible Toluene Monooxygenase That Cooxidizes 1,4-Dioxane and 1,1-Dichloroethylene in Propanotrophic Azoarcus sp. Strain DD4

机译:发现一种诱导型甲苯单氧基酶,其在ProphotoOphic Azoarcus Sp中将1,4-二恶烷和1,1-二氯乙烯进行聚合。 菌株DD4

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Cometabolic degradation plays a prominent role in bioremediation of commingled groundwater contamination (e.g., chlorinated solvents and the solvent stabilizer 1,4-dioxane [dioxane]). In this study, we untangled the diversity and catalytic functions of multicomponent monooxygenases in Azoarcus sp. strain DD4, a Gram-negative propanotroph that is effective in degrading dioxane and 1,1-dichloroethylene (1,1-DCE). Using a combination of knockout mutagenesis and heterologous expression, a toluene monooxygenase (MO) encoded by the tmoABCDEF gene cluster was unequivocally proved to be the key enzyme responsible for the cometabolism of both dioxane and 1,1-DCE. Interestingly, in addition to utilizing toluene as a primary substrate, this toluene MO can also oxidize propane into 1-propanol. Expression of this toluene MO in DD4 appears inducible by both substrates (toluene and propane) and their primary hydroxylation products (m-cresol, p-cresol, and 1-propanol). These findings coherently explain why DD4 can grow on propane and express toluene MO for active cooxidation of dioxane and 1,1-DCE. Furthermore, upregulation of tmo transcription by 1-propanol underlines the implication potential of using 1-propanol as an alternative auxiliary substrate for DD4 bioaugmentation. The discovery of this toluene MO in DD4 and its degradation and induction versatility can lead to broad applications, spanning from environmental remediation and water treatment to biocatalysis in green chemistry.IMPORTANCE Toluene MOs have been well recognized given their robust abilities to degrade a variety of environmental pollutants. Built upon previous research efforts, this study ascertained the untapped capability of a toluene MO in DD4 for effective cooxidation of dioxane and 1,1-DCE, two of the most prevailing yet challenging groundwater contaminants. This report also aligns the induction of a toluene MO with nontoxic and commercially accessible chemicals (e.g., propane and 1-propanol), extending its implications in the field of environmental microbiology and beyond.
机译:Cometabolic降解在混合地下水污染(例如,氯化溶剂和溶剂稳定剂1,4-二恶烷[二恶烷])中起着突出的作用。在这项研究中,我们未解释了氮杂神血SP中多组分单氧基酶的多样性和催化功能。菌株DD4,革兰阴性丙醇,其在降解二恶烷和1,1-二氯乙烯(1,1- DCE)中是有效的。使用敲除诱变和异源表达的组合,通过TMOABCDEF基因簇编码的甲苯单氧基酶(MO)无概念被证明是负责二恶烷和1,1-DCE的Cometabolism的关键酶。有趣的是,除了利用甲苯作为初级基质外,该甲苯MO还可以将丙烷氧化成1-丙醇。该DD4中该甲苯Mo的表达出现通过底物(甲苯和丙烷)及其初级羟基化产物(M-甲酚,p甲酚和1-丙醇)诱导。这些发现者连贯地解释为什么DD4可以在丙烷上生长,表达甲苯MO,以积极注释二恶烷和1,1-DCE。此外,通过1-丙醇的TMO转录的上调强调使用1-丙醇作为DD4生物沉积的替代辅助基材的含义电位。在DD4中的这种甲苯MO的发现及其降解和诱导通用能量可以导致广泛的应用,从环境修复和水处理到绿色化学中的生物分析。鉴于其鲁棒能力降低各种环境的稳健能力,得到了很好的认可.portance甲苯MOS污染物。本研究建立在先前的研究工作之上,该研究确定了DD4中的甲苯MO的未开发能力,以有效的二恶烷和1,1-DCE,其中两种最具普遍挑战的地下水污染物。该报告还对与无毒和市售的化学物质(例如,丙烷和1-丙醇)的诱导对准甲苯MO(例如,丙烷和1-丙醇),其在环境微生物学及超越领域的影响延伸。

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