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In vitro biotransformation of PBDEs by root crude enzyme extracts: Potential role of nitrate reductase (NaR) and glutathione S-transferase (GST) in their debromination

机译:根粗酶提取物对PBDEs的体外生物转化:硝酸还原酶(NaR)和谷胱甘肽S-转移酶(GST)在其脱溴中的潜在作用

摘要

In order to investigate the enzyme transformation of PBDEs and to track the key enzymes involved in PBDE degradation in plants, in vivo exposure of plants of ryegrass, pumpkin and maize and in vitro exposure of their root crude enzyme extracts to PBDEs were conducted. Degradation of PBDEs in the root crude enzyme solutions fit well with the first order kinetics (R-2 = 0.52-0.97, P 0.05), and higher PBDEs degraded faster than the lower ones. PBDEs could be transformed to lower brominated PBDEs and hydroxylated-PBDEs by the root crude enzyme extracts with debromination as the main pathway which contributed over 90% of PBDE depletion. In vitro and in vivo exposure to PBDEs produced similar responses in root enzyme activities of which the nitroreductase (NaR) and glutathione-transferase (GST) activities decreased significantly, while the peroxidase, catalase and cytochrome P-450 activities had no significant changes. Furthermore, higher enzyme concentrations of NaR and GST led to higher PBDE debromination rates, and the time-dependent activities of NaR and GST in the root crude enzyme extracts were similar to the trends of PBDE depletion. All these results suggest that NaR and GST were the key enzymes responsible for PBDE degradation. This conclusion was further confirmed by the in vitro debromination of PBDEs with the commercial pure NaR and GST. (C) 2012 Elsevier Ltd. All rights reserved.
机译:为了研究多溴二苯醚的酶转化并追踪植物中多溴二苯醚降解的关键酶,进行了黑麦草,南瓜和玉米植物的体内暴露以及其根粗酶提取物在多溴二苯醚中的体外暴露。根粗酶溶液中PBDEs的降解与一级动力学非常吻合(R-2 = 0.52-0.97,P <0.05),较高的PBDEs降解速度比较低的PBDEs快。根粗酶提取物可将多溴二苯醚转化为低溴化多溴二苯醚和羟基化多溴二苯醚,而脱溴是主要途径,占溴二苯醚消耗量的90%以上。 PBDEs的体外和体内暴露在根酶活性中产生相似的响应,其中硝基还原酶(NaR)和谷胱甘肽转移酶(GST)活性显着降低,而过氧化物酶,过氧化氢酶和细胞色素P-450活性没有显着变化。此外,较高的NaR和GST酶浓度导致较高的PBDE脱溴率,根粗酶提取物中NaR和GST的时间依赖性活性与PBDE消耗的趋势相似。所有这些结果表明,NaR和GST是导致PBDE降解的关键酶。用商用纯NaR和GST对多溴二苯醚进行脱溴进一步证实了这一结论。 (C)2012 Elsevier Ltd.保留所有权利。

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