Yamasaki Yoshiki
Research Institute for Bioresources, Okayama University, Kurashiki-shi, Okayama 710-0046, Japan.
Phytochemistry. 2003 Nov;64(5):935-9. doi: 10.1016/s0031-9422(03)00430-8.
Beta-amylase (EC 3.2.1.2) was isolated from germinating millet (Panicum miliaceum L.) seeds by a procedure that included ammonium sulfate fractionation, chromatography on DEAE-cellulofine and CM-cellulofine, and preparative isoelectric focusing. The enzyme was homogeneous by SDS-PAGE. The M(r) of the enzyme was estimated to be 58,000 based on its mobility on SDS-PAGE and gel filtration with TSKgel G4000SW(XL), which showed that it is composed of a single unit. The isoelectric point of the enzyme was 4.62. The enzyme hydrolyzed malto-oligosaccharides more readily as their degree of polymerization increased, this being strongest for malto-oligosaccharides larger than 13 glucose residues and very weakly for maltotriose. Amylose, amylopectin and soluble starch were the most suitable substrates for the enzyme. While the enzyme showed some activity against native starch by itself, starch digestion was accelerated 2.5-fold using alpha-amylase, pullulanase and alpha-glucosidase. This enzyme appears to be very important for the germination of millet seeds.
通过包括硫酸铵分级分离、在DEAE - 纤维素细粉和CM - 纤维素细粉上进行色谱分离以及制备性等电聚焦的步骤,从发芽的黍(Panicum miliaceum L.)种子中分离出β - 淀粉酶(EC 3.2.1.2)。该酶经SDS - PAGE分析为均一的。根据其在SDS - PAGE上的迁移率以及使用TSKgel G4000SW(XL)进行凝胶过滤的结果,估计该酶的相对分子质量(M(r))为58,000,这表明它由单一亚基组成。该酶的等电点为4.62。随着麦芽寡糖聚合度的增加,该酶对其水解更为容易,对于聚合度大于13个葡萄糖残基的麦芽寡糖水解作用最强,而对麦芽三糖的水解作用非常弱。直链淀粉、支链淀粉和可溶性淀粉是该酶最适宜的底物。虽然该酶自身对天然淀粉有一定活性,但使用α - 淀粉酶、支链淀粉酶和α - 葡萄糖苷酶可使淀粉消化加速2.5倍。这种酶对于黍种子的萌发似乎非常重要。