标题: | 枯草杆菌UDP-glycosyltransferase之受质专一性研究与快速活性侦测法建立 Research of substrate specificity and a quick colorimetric activity assay method of UDP-glycosyltransferase from Bacillus cereus |
作者: | 邱钰安 Chiu, Yu-An 李耀坤 Li, Yaw-Kuen 应用化学系分子科学硕博士班 |
关键字: | 醣基转移酶;醣苷;受质专一性;酵素活性侦测法;枯草杆菌;UDP-glycosyltransferase;glycoside;substrate specificity;colorimetric activity assay;Bacillus cereus |
公开日期: | 2010 |
摘要: | 醣基化对于生物体的生化合成反应相当重要,在近期的疾病治疗上扮演重要的角色,如能快速并高通量的侦测醣基转移酶酵素活性,便可开启此类酵素的应用。本研究旨于探讨Bacillus cereus之UDP-glycosyltransferase(BcGT-1)的催化反应,我们藉由基因工程将BcGT-1建构在大肠杆菌之BL21(DE3)的表现系统上,并经过DEAE管柱纯化,得到大量酵素。本研究因酵素受质的特性,得以利用BcGT-1对4-nitrophenol的转醣能力,使用一便利的光学测定法,以直接侦测酵素BcGT-1的活性,此法具备快速、方便且能即时侦测等特色。 首先,我们观察不同硝基苯酚(醣基接受者)的亲核性与酵素反应的关系。研究显示硝基苯酚之pKa对于BcGT-1的催化反应有密切关联性,酵素的转醣能力会随醣基接受者亲核力之下降而减弱。 此外,我们亦研究BcGT-1在合成应用之潜力,利用纯化后的酵素与不同醣基提供者进行转醣反应,发现酵素对于UDP-glucose具有高度专一性,而酵素对不同的醣基接受者,如:苯酚、苯硫醇、苯胺类进行转醣反应,发现能对其成功接上葡萄醣基,此研究显示此BcGT-1能用来合成各种新颖葡萄醣苷化合物,如O-glucoside、S-glucoside及N-glucoside等,未来将具有广泛的应用性。 Glycosyltransferases have many important biological functions in all species and in the use of disease treatment. Thus we need a real time and high-throughput method to analyze glycosyltransferase activity. In this research, we focus on the UDP-glycosyltransferase from Bacillus cereus (BcGT-1) catalytic reaction. BcGT-1 was successfully over-expressed in E. coli BL21 (DE3) and purified by DEAE column. In this research, we use a quick colorimetric activity assay for glycosyltransferase BcGT-1. The assay principle is based on the glycosylation activity of BcGT-1 on 4-nitrophenol. It provides a timesaving, simple and high-throughput for analyzing glycosyltransferase activity. First, the nitrophenolic compounds with different nucleophilicity were used to be the glucose acceptors in BcGT-1 glycosylation reaction. The nucleophilicity of nitrophenolic compounds was observed to play an important role in enzymatic reaction. The activity of BcGT-1 was decreased when nucleophilicity of acceptor was reduced. In addition, we also investigate the potential of BcGT-1 to be used in synthesis. Using the purified BcGT-1 to catalyze the glycosylation with different donors shows that this enzyme has high specificity to UDP-glucose. However, this enzyme can convert phenolic, thiolphenolic and aromatic amine to their respective glucosides successfully. It means that BcGT-1, has high potential to be used to synthesize novel glycosides like O-glucoside、S-glucoside and N-glucoside. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT079858508 http://hdl.handle.net/11536/48486 |
显示于类别: | Thesis |