Zhang Yun, Huang Xi-Rong, Huang Feng, Li Yue-Zhong, Qu Yin-Bo, Gao Pei-Ji
Key Laboratory of Colloid & Interface Chemistry of the Education Ministry of China, Shandong University, Jinan 250100, China.
Colloids Surf B Biointerfaces. 2008 Aug 1;65(1):50-3. doi: 10.1016/j.colsurfb.2008.02.015. Epub 2008 Feb 29.
To enhance the catalytic activity of lignin peroxidase (LiP) in a reverse micelle, a synthesized two-tail nonionic surfactant N-gluconyl glutamic acid didecyl ester (GGDE) was used to formulate a novel reverse micelle. Based on the LiP catalyzed oxidation of veratryl alcohol (VA) in this novel GGDE/TritonX-100-cyclohexane-H(2)O reverse micelle, the effects of the size of the reverse micelle, the buffer pH, and the concentration of H(2)O(2) on the catalytic activity of LiP were investigated. Under the optimized conditions, the catalytic efficiency of LiP in the GGDE/TritonX-100 reverse micelle was 40 times higher than that in the AOT reverse micelle. The full expression of catalytic activity of LiP in this medium was mainly due to the lack of electrostatic interaction between LiP and the head group of GGDE and TritonX-100 and to the size fit between LiP and the inner water cavity of the reverse micelle.
为了提高木质素过氧化物酶(LiP)在反胶束中的催化活性,使用合成的双尾非离子表面活性剂N-葡萄糖基谷氨酸二癸酯(GGDE)制备了一种新型反胶束。基于LiP在这种新型GGDE/TritonX-100-环己烷-H₂O反胶束中催化氧化藜芦醇(VA)的反应,研究了反胶束大小、缓冲液pH值和H₂O₂浓度对LiP催化活性的影响。在优化条件下,LiP在GGDE/TritonX-100反胶束中的催化效率比在AOT反胶束中高40倍。LiP在该介质中催化活性的充分表达主要是由于LiP与GGDE和TritonX-100的头基之间缺乏静电相互作用,以及LiP与反胶束内部水腔之间的尺寸适配。