Wang Huai, Zong Min-Hua, Wu Hong, Lou Wen-Yong
Lab of Applied Biocatalysis, South China University of Technology, Guangzhou, PR China.
J Biotechnol. 2007 May 10;129(4):689-95. doi: 10.1016/j.jbiotec.2007.02.008. Epub 2007 Feb 16.
For the first time, lipozyme TL IM, an inexpensive lipase from Thermomyces lanuginosa, was successfully applied to the regioselective synthesis of lipophilic 5-fluorouridine ester derivatives. The ESI-MS and (13)C NMR analysis confirmed that the end products of the acylation were 5'-O-acyl 5-fluorouridines, more powerful anti-tumor drugs than 5-fluorouridine itself. Notably, the chain length of acyl donors had an obvious effect on the initial rate and the maximum substrate conversion of the regioselective acylation. The acylation of 5-fluorouridine with vinyl laurate was used as a model to explore the influence of various factors on the reaction with respect to the initial rate, the maximum substrate conversion and the regioselectivity. The optimum water activity, the molar ratio of vinyl laurate to 5-fluorouridine, reaction temperature and shaking rate were 0.07, 15/1, 45 degrees C and 200rpm, respectively, under which the maximum substrate conversion and the regioselectivity were as high as 98.4 and >99%, respectively, after a reaction time of around 6h.
首次成功将来自嗜热栖热菌的一种廉价脂肪酶——脂肪酶TL IM应用于亲脂性5-氟尿苷酯衍生物的区域选择性合成。电喷雾电离质谱(ESI-MS)和碳-13核磁共振(¹³C NMR)分析证实,酰化反应的最终产物是5'-O-酰基5-氟尿苷,它是比5-氟尿苷本身更强效的抗肿瘤药物。值得注意的是,酰基供体的链长对区域选择性酰化反应的初始速率和最大底物转化率有明显影响。以月桂酸乙烯酯与5-氟尿苷的酰化反应为模型,探究各种因素对反应初始速率、最大底物转化率和区域选择性的影响。最佳水分活度、月桂酸乙烯酯与5-氟尿苷的摩尔比、反应温度和振荡速率分别为0.07、15/1、45℃和200转/分钟,在此条件下,反应约6小时后,最大底物转化率和区域选择性分别高达98.4%和>99%。