Zhang Yu, Zeng Zhuotong, Zeng Guangming, Liu Xuanming, Liu Zhifeng, Chen Ming, Liu Lifeng, Li Jianbing, Xie Gengxin
College of Environmental Science and Engineering, Hunan University, Changsha 410082, PR China.
Colloids Surf B Biointerfaces. 2012 Sep 1;97:7-12. doi: 10.1016/j.colsurfb.2012.04.001. Epub 2012 Apr 11.
Effects of Triton X-100 on the removal of aqueous phenol catalyzed by laccase were studied. The optimal concentration of Triton X-100 was 155 μM to improve phenol removal when the concentrations of phenol and laccase were 50 mg/L and 0.05 mg/mL, respectively. Laccase activity was increased with Triton X-100 at concentrations from 31 to 930 μM and the highest increase was about 17% by 930 μM Triton X-100. The removal efficiencies of phenol with 155 μM Triton X-100 were 1.2, 1.6, 3.4, 4.5, and 5.7 fold those of the control after 6h when the initial concentrations of phenol were 50, 100, 200, 400 and 600 mg/L, respectively. Molecular docking method was used to analyze the interactions between laccase and substrates. Docking results showed that phenol formed hydrogen bonds and hydrophobic interactions with laccase, whereas Triton X-100 formed hydrophobic interactions with laccase, which may increase the laccase activity and enhance phenol removal. The reaction of phenol removal was also characterized using UV spectra. The results indicated that the presence of low concentrations of Triton X-100 for phenol removal catalyzed by enzymes may be an alternative to the present phenol removal processes in water treatment or remediation.
研究了曲拉通X-100对漆酶催化去除水中苯酚的影响。当苯酚和漆酶浓度分别为50 mg/L和0.05 mg/mL时,曲拉通X-100的最佳浓度为155 μM,以提高苯酚去除率。当曲拉通X-100浓度在31至930 μM之间时,漆酶活性随其浓度增加而升高,930 μM曲拉通X-100使漆酶活性最高增加约17%。当苯酚初始浓度分别为50、100、200、400和600 mg/L时,6小时后,添加155 μM曲拉通X-100时苯酚的去除效率分别是对照组的1.2、1.6、3.4、4.5和5.7倍。采用分子对接方法分析漆酶与底物之间的相互作用。对接结果表明,苯酚与漆酶形成氢键和疏水相互作用,而曲拉通X-100与漆酶形成疏水相互作用,这可能会提高漆酶活性并增强苯酚去除效果。还利用紫外光谱对苯酚去除反应进行了表征。结果表明,在酶催化去除苯酚过程中使用低浓度的曲拉通X-100可能是目前水处理或修复中苯酚去除工艺的一种替代方法。