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Diverse metabolic pathways in the degradation of phenylalkanoic acids and their monohydroxylated derivatives in Cupriavidus sp. strain ST-14

机译:在铜杯菌属中的苯基链烷酸及其单羟基化衍生物降解的不同代谢途径。 ST-14株

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Cupriavidus sp. strain ST-14 isolated from municipal waste-contaminated soil had previously been described to harbour catabolic potential of assimilating 2- and 4-nitrobenzoic acids. Apart from the mononitrobenzoic acids, strain ST-14 was observed to be capable of utilizing various phenylalkanoic acids singly, as sole carbon and energy sources. The results of chromatographic and spectrometric analyses in combination with oxygen uptake and enzyme activity studies, revealed the assimilation of phenylacetic acid via phenylacetyl CoA and 3-phenylpropionic acid via beta-oxidation pathway with the formation of benzoic acid and catechol as metabolic intermediates. Additionally, all the isomers of monohydroxyphenylacetic acids were metabolized by the action of substrate-specific monooxygenases to furnish homogentisic acid, which was then assimilated via classical homogentisate metabolic pathway. On the other hand, 3-(3-hydroxyphenyl)propionic acid and 3-(4-hydroxyphenyl)propionic acid were metabolized via the formation of 3-(2,3-dihydroxyphenyl)propionic acid and 4-hydroxybenzoic acid, respectively, ultimately leading to the TCA cycle intermediates. The present study illustrates a broad degradative potential of strain ST-14, harbouring diverse catabolic machineries of biotechnological importance, elucidating couple of pathways, reported for the first time in the assimilation of hydroxyphenylalkanoic acids.
机译:Cupriavidus sp。从城市垃圾污染的土壤中分离出的ST-14菌株以前曾被描述具有同化2-和4-硝基苯甲酸的分解代谢潜能。除了一硝基苯甲酸外,还观察到菌株ST-14能够单独利用各种苯基链烷酸作为唯一的碳和能源。色谱和光谱分析结果与氧气吸收和酶活性研究相结合,结果表明,苯乙酸通过苯乙酰基CoA和3-苯基丙酸通过β-氧化途径同化,并形成苯甲酸和邻苯二酚作为代谢中间体。另外,单羟基苯基乙酸的所有异构体都通过底物特异性单加氧酶的作用进行代谢,从而得到高纯酸,然后通过经典的高纯酸代谢途径将其同化。另一方面,通过形成3-(2,3-二羟基苯基)丙酸和4-羟基苯甲酸,最终代谢3-(3-羟基苯基)丙酸和3-(4-羟基苯基)丙酸。导致TCA循环中间体。本研究表明,ST-14菌株具有广泛的降解潜力,具有多种具有生物技术重要性的分解代谢机器,阐明了几种途径,这是羟苯基链烷酸同化的首次报道。

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