Yamasaki Yoshiki, Nakashima Susumu, Konno Haruyoshi
Research Institute for Bioresources, Okayama University, Kurashiki-shi, Okayama, Japan.
Acta Biochim Pol. 2008;55(3):507-10. Epub 2008 Sep 12.
Pullulanase (EC 3.2.1.41) in non-germinating seeds was compared with that in germinating seeds. Moreover, pullulanase from the endosperm of rice (Oryza sativa L., cv. Hinohikari) seeds was isolated and its properties investigated. The pI value of pullulanase from seeds after 8 days of germination was almost equal to that from non-germinating seeds, which shows that these two enzymes are the same protein. Therefore, the same pullulanase may play roles in both starch synthesis during ripening and starch degradation during germination in rice seeds. The enzyme was isolated by a procedure that included ammonium sulfate fractionation, DEAE-cellulofine column chromatography, preparative isoelectric focusing, and preparative disc gel electrophoresis. The enzyme was homogeneous by SDS/PAGE. The molecular weight of the enzyme was estimated to be 100 000 based on its mobility on SDS/PAGE and 105 000 based on gel filtration with TSKgel super SW 3000, which showed that it was composed of a single unit. The isoelectric point of the enzyme was 4.7. The enzyme was strongly inhibited by beta-cyclodextrin. The enzyme was not activated by thiol reagents such as dithiothreitol, 2-mercaptoethanol or glutathione. The enzyme most preferably hydrolyzed pullulan and liberated only maltotriose. The pullulan hydrolysis was strongly inhibited by the substrate at a concentration higher than 0.1%. The degree of inhibition increased with an increase in the concentration of pullulan. However, the enzyme hydrolyzed amylopectin, soluble starch and beta-limit dextrin more rapidly as their concentrations increased. The enzyme exhibited alpha-glucosyltransfer activity and produced an alpha-1,6-linked compound of two maltotriose molecules from pullulan.
对非发芽种子中的支链淀粉酶(EC 3.2.1.41)与发芽种子中的支链淀粉酶进行了比较。此外,还从水稻(Oryza sativa L.,品种:日之光)种子的胚乳中分离出支链淀粉酶,并对其性质进行了研究。发芽8天后种子中的支链淀粉酶的pI值与非发芽种子中的几乎相等,这表明这两种酶是同一种蛋白质。因此,相同的支链淀粉酶可能在水稻种子成熟期间的淀粉合成以及发芽期间的淀粉降解过程中都发挥作用。该酶通过包括硫酸铵分级分离、DEAE - 纤维素细柱色谱、制备性等电聚焦和制备性圆盘凝胶电泳的步骤进行分离。通过SDS/PAGE分析该酶是纯一的。基于其在SDS/PAGE上的迁移率,该酶的分子量估计为100000,基于使用TSKgel super SW 3000凝胶过滤的结果,分子量为105000,这表明它由单个亚基组成。该酶的等电点为4.7。该酶受到β - 环糊精的强烈抑制。该酶不被诸如二硫苏糖醇、2 - 巯基乙醇或谷胱甘肽等硫醇试剂激活。该酶最优先水解支链淀粉并仅释放麦芽三糖。当底物浓度高于0.1%时,支链淀粉的水解受到强烈抑制。抑制程度随着支链淀粉浓度的增加而增加。然而,随着支链淀粉、可溶性淀粉和β - 极限糊精浓度的增加,该酶对它们的水解速度更快。该酶表现出α - 葡萄糖基转移活性,并从支链淀粉产生两个麦芽三糖分子的α - 1,6 - 连接化合物。