Uematsu Kohei, Minami Yuto, Taira Shu, Katano Hajime
Faculty of Biotechnology, Fukui Prefectural University.
Anal Sci. 2014;30(2):299-303. doi: 10.2116/analsci.30.299.
The effects of the cationic polymer ε-poly-L-lysine (εPL) on the enzymatic reaction rate of glucose oxidase (GOD) with ferrocene derivatives having different ionic charges have been investigated by measuring the ferrocene derivative-mediated catalytic current of oxidation by GOD. When negatively charged ferrocenes were used, the bioelectrocatalytic current, which is related to the enzymatic reaction rate, was increased by the addition of εPL. On the other hand, the reaction rates with positively charged ferrocenes were decreased by εPL. These promotion and suppression effects of εPL were remarkable at a certain pH range, where εPL and GOD were charged positively and negatively, respectively. Within this range, the polycationic εPL would be adsorbed onto the GOD surface to enhance the electrostatic interactions of the enzyme with negatively charged substrates, and repulsion with positively charged ones. These findings should be important for practical applications of enzymes.
通过测量二茂铁衍生物介导的葡萄糖氧化酶(GOD)氧化催化电流,研究了阳离子聚合物ε-聚-L-赖氨酸(εPL)对具有不同离子电荷的二茂铁衍生物存在下葡萄糖氧化酶(GOD)酶促反应速率的影响。当使用带负电荷的二茂铁时,与酶促反应速率相关的生物电催化电流通过添加εPL而增加。另一方面,εPL降低了带正电荷的二茂铁的反应速率。εPL的这些促进和抑制作用在特定的pH范围内显著,在此范围内,εPL和GOD分别带正电荷和负电荷。在此范围内,聚阳离子εPL会吸附在GOD表面,以增强酶与带负电荷底物的静电相互作用,并与带正电荷的底物产生排斥作用。这些发现对于酶的实际应用应该具有重要意义。