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Detection of halogenated organic compounds using immobilized thermophilic dehalogenase

机译:使用固定的嗜热脱卤酶检测卤代有机化合物

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Environmental pollutants containing halogenated organic compounds can cause a plethora of health problems. Detection, quantification, and eventual remediation of halogenated pollutants in the environment are important to human well-being. Toward this end, we previously identified a haloacid dehalogenase, L-HADST, from the thermophile Sulfolobus tokodaii. This thermophilic enzyme is extremely stable and catalyzes, stereospecifically, the dehalogenation of l-2-haloacids. In the current study, we covalently linked L-HADST to an N-hydroxysuccinimidyl Sepharose resin to construct a highly specific sensor with long shelf life for the detection of l-2-haloacids. The enzyme-modified resin was packed into disposable columns. Samples containing l-2-haloacids were first incubated in the column, and were then collected to quantify the chloride produced through the breakdown of the substrate. The optimum pH of the immobilized enzyme is around 9.5, similar to that of the soluble protein. Its catalytic activity increased with temperature up to the highest temperature measured (50 °C). The resin could be fully regenerated after multiple reaction cycles and retained 70% of the initial activity after being stored at 4 °C for 6 months. The L-HADST-modified resin could be used to breakdown and quantify l-2-haloacids spiked in the simulated environmental samples, indicating dehalogenases from extremophiles can potentially be employed in the detection and decontamination of l-2-haloacids.
机译:含有卤代有机化合物的环境污染物会引起很多健康问题。对环境中卤代污染物的检测,定量和最终修复对人类的福祉至关重要。为此,我们先前从嗜热菌Sulfolobus tokodaii中鉴定了一种卤酸脱卤酶L-HADST 。这种嗜热酶极其稳定,并立体定向催化1-2卤代酸的脱卤作用。在当前的研究中,我们将L-HADST 与N-羟基琥珀酰亚胺基Sepharose树脂共价连接,以构建具有高货架期的高特异性传感器,用于检测L-2-卤代酸。将酶改性的树脂填充到一次性柱中。首先将含有l-2-卤代酸的样品在色谱柱中孵育,然后收集以定量通过底物分解产生的氯化物。固定化酶的最佳pH值约为9.5,与可溶性蛋白质的pH值相似。其催化活性随温度升高到实测的最高温度(50°C)而增加。该树脂可在多个反应循环后完全再生,并在4°C下存储6个月后仍保留70%的初始活性。 L-HADST 改性树脂可用于模拟环境样品中加标的L-2-卤代酸的分解和定量,表明来自极端微生物的脱卤酶可潜在地用于L-2-卤代酸的检测和去污。

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