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首页> 外文期刊>Applied Microbiology and Biotechnology >Degradation of an endocrine disrupting chemical, DEHP [di-(2-ethylhexyl)-phthalate], by Fusarium oxysporum f. sp pisi cutinase
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Degradation of an endocrine disrupting chemical, DEHP [di-(2-ethylhexyl)-phthalate], by Fusarium oxysporum f. sp pisi cutinase

机译:尖孢镰刀菌(Fusarium oxysporum)降解内分泌干扰化学物质DEHP [二​​(2-(2-乙基己基)-邻苯二甲酸酯]。豌豆角质酶

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The efficiency of two lypolytic enzymes (fungal cutinase, yeast esterase) in the degradation of di-(2-ethylhexyl)-phthalate (DEHP) was investigated. The DEHP-degradation rate of fungal cutinase was surprisingly high, i.e. almost 70% of the initial DEHP (500 mg/l) was decomposed within 2.5 h and nearly 50% of the degraded DEHP disappeared within the initial 15 min. With the yeast esterase, despite the same concentration, more than 85% of the DEHP remained even after 3 days of treatment. During the enzymatic degradation of DEHP, several DEHP-derived compounds were detected and time-course changes in composition were also monitored. During degradation with fungal cutinase, most DEHP was converted into 1,3-isobenzofurandione (IBF) by diester hydrolysis. In the degradation by yeast esterase, two organic chemicals were produced from DEHP: IBF and an unidentified compound (X). The final chemical composition after 3 days was significantly dependent on the enzyme used. Fungal cutinase produced IBF as a major degradation compound. However, in the DEHP degradation by yeast esterase, compound X was produced in abundance in addition to IBF. The toxic effects of the final degradation products were investigated, using various recombinant bioluminescent bacteria and, as a result, the degradation products from yeast esterase were shown to contain a toxic hazard, causing oxidative stress and damage to protein synthesis. [References: 42]
机译:研究了两种溶菌酶(真菌角质酶,酵母酯酶)降解邻苯二甲酸二(2-乙基己基)酯(DEHP)的效率。真菌角质酶的DEHP降解率出奇地高,即,最初的DEHP(500 mg / l)中有将近70%在2.5小时内分解,而在最初的15分钟内几乎有50%的降解DEHP消失了。使用酵母酯酶,尽管浓度相同,但即使在处理3天后仍保留了超过85%的DEHP。在DEHP的酶促降解过程中,检测到了几种DEHP衍生的化合物,并且还监测了组成的时程变化。在用真菌角质酶降解的过程中,大多数DEHP通过二酯水解转化为1,3-异苯并呋喃二酮(IBF)。在酵母酯酶的降解过程中,DEHP产生了两种有机化学物质:IBF和一种未知的化合物(X)。 3天后的最终化学组成明显取决于所用的酶。真菌角质酶产生的IBF是主要的降解化合物。然而,在通过酵母酯酶进行的DEHP降解中,除IBF外还大量产生化合物X。使用各种重组生物发光细菌研究了最终降解产物的毒性作用,结果表明,来自酵母酯酶的降解产物具有毒性危害,引起氧化应激并损害蛋白质合成。 [参考:42]

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