Omichi K, Hase S
Department of Chemistry, Graduate School of Science, Osaka University, Toyonaka, Osaka 560-0043, Japan.
J Biochem. 1998 May;123(5):932-6. doi: 10.1093/oxfordjournals.jbchem.a022027.
An assay method for glycogen debranching enzyme involving fluorogenic dextrins as substrates was developed. Two dextrins were prepared from 6-O-alpha-D-glucosyl-alpha-cyclodextrin and glucose by taking advantage of the action of Bacillus macerans cyclodextrin glucanotransferase, and converted by pyridylamination to fluorogenic derivatives. Structural analysis of the fluorogenic dextrins by FAB-MS, partial acid hydrolysis, and glucoamylase digestion revealed that they were Glcalpha1-4(Glcalpha1-6)Glcalpha1-4Glcalpha1- 4Glcalpha1-4Glc-PA (FD6) and Glcalpha1-4Glcalpha1-4(Glcalpha1-6)Glcalpha1- 4Glcalpha1-4Glcalpha1-4G lc-PA (FD7). Using the glycogen debranching enzyme from rabbit muscle, FD6 and FD7 were, respectively, hydrolyzed to PA-maltopentaose and PA-maltohexaose, in addition to glucose, showing that these two fluorogenic dextrins are suitable substrates for assaying the glycogen debranching enzyme. An assay method involving the separation and quantification by HPLC of the characteristic fluorogenic products was successfully applied to determination of the distribution of the enzyme activity in mouse cerebrum.
开发了一种以荧光糊精为底物的糖原脱支酶测定方法。利用浸麻芽孢杆菌环糊精葡糖基转移酶的作用,由6-O-α-D-葡糖基-α-环糊精和葡萄糖制备了两种糊精,并通过吡啶胺化将其转化为荧光衍生物。通过快原子轰击质谱法(FAB-MS)、部分酸水解和糖化酶消化对荧光糊精进行结构分析,结果表明它们分别是Glcα1-4(Glcα1-6)Glcα1-4Glcα1- 4Glcα1-4Glc-PA(FD6)和Glcα1-4Glcα1-4(Glcα1-6)Glcα1- 4Glcα1-4Glcα1-4Glc-PA(FD7)。使用兔肌肉中的糖原脱支酶,除葡萄糖外,FD6和FD7分别被水解为PA-麦芽五糖和PA-麦芽六糖,这表明这两种荧光糊精是测定糖原脱支酶的合适底物。一种通过高效液相色谱法(HPLC)分离和定量特征荧光产物的测定方法成功应用于小鼠大脑中该酶活性分布的测定。