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Biodegradation of 4-nitrophenol by a Rhodococcus species and a preliminary insight into its toxicoproteome based on mass spectrometry analysis

机译:基于质谱分析的rhodococcus物种生物降解和rhodococcus物种的初步洞察初探

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Aim: The objective of this study was to understand the possible fate of 4-NP through the molecular mechanism and to identify potential enzymes involved in 4-NP biodegradation by Rhodococcus sp. strain BUPNP1Methodology: Biodegradation of 4-NP was detected spectrophotometrically at 400 nm and also confirmed by TLC and HPLC. Comparative study of proteomes was performed by 2-D gel electrophoresis followed by peptide mass fingerprinting and bioinformatic analysis to identify and/ or predict the possible functions of over-expressed proteins in 4-NP treated cells of BUNP1.Results: Utilization of 4-nitrophenol and its hydrolysis intermediate 4-nitrocatechol (4-NC) and 1,2,4-Benzenetriol as sole carbon source indicated the presence of genomic information encoding the enzyme necessary for the operation of 4-nitrophenol degradation pathway in the strain BUPNP1. It could transform 4-NP into 4-NC by monooxygenase whose major activity was detected during initial stage of degradation. The 4-NC further depleted in the medium to release nitrite ions. In order to investigate the molecular changes occurring during degradation, a comparative study of proteome profiles was carried out where; 4-nitrophenol treated cells were compared against cells grown on glucose as control. The comparative study indicated expression of several protein spots under 4-nitrophenol treated condition.Interpretation: This study showed the potential of BUPNP1 strain belonging to genus Rhodococcus towards induced expression of some unique proteins which might have possible role in 4-NP biodegradation process.
机译:目的:本研究的目的是通过分子机制理解4-NP的可能命运,并鉴定rhodococcus sp中参与4-np生物降解的潜在酶。菌株Bupnp1methodology:将4-NP的生物降解在400nm处检测到4-NM,并通过TLC和HPLC证实。蛋白质组的比较研究通过2-D凝胶电泳进行,然后进行肽质量指纹和生物信息分析,以鉴定和/或预测Bunp1的4-NP处理细胞中的过表达蛋白的可能函数。结果:4-硝基苯酚的利用率其水解中间体4-硝基替肽(4-NC)​​和1,2,4-苯四醇作为唯一碳源表明,存在编码4-硝基苯酚降解途径在菌株BUPNP1中的4-硝基苯酚降解途径所需的酶的基因组信息。通过单氧基酶将4-NP转化为4-NC,其在初始降解期间检测到的主要活性。在培养基中进一步耗尽的4-NC以释放亚硝酸盐离子。为了研究在降解期间发生的分子变化,进行了蛋白质组谱的比较研究在其中;将4-硝基苯酚处理的细胞与在葡萄糖中生长的细胞进行比较。对比研究表明,在4-硝基苯酚处理条件下的几种蛋白质斑点的表明表达了interpretation:该研究表明,属于rhodococcus属于rhodococcus的诱导一些独特蛋白质在4-np生物降解过程中可能具有可能作用的表达的潜力。

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