Eremin A N, Semashko T V, Mikhaĭlova R V
Prikl Biokhim Mikrobiol. 2006 Jul-Aug;42(4):452-61.
Polymers and copolymers of horseradish root peroxidase (HRP) and Penicillium funiculosum 46.1 glucose oxidase (GO) have been synthesized and their catalytic properties have been characterized (free and immobilized forms of each enzyme were studied). The cooxidation reaction of phenol and 4-aminoantipyrin (4-AAP), performed in an aqueous medium in the presence of equimolar amounts of GO and HRP, was characterized by effective K(M) and k(cat) of 0.58 mM and 20.9 s(-1) (for phenol), and 14.6 mM and 18.4 s(-1) (glucose), respectively. The catalytic efficiency of polymerization products (PPs) of GO (GO-PPs) depended on the extent of their aggregation. The combinations GO + HRP-PP and HRP + GO-PP, as well as the copolymer HRP*-GO-PP, proved promising as reagents for enzyme-based analytical systems. When adsorbed on aluminum hydroxide gels, GO-PPs exhibited higher catalytic activity than the non-polymeric enzyme. Maximum retention of GO-PP activity on the inorganic carrier was observed in the case of GO-PP copolymers with an activated HRP. Polymerization of HRP in the presence of a zinc hydroxide gel, paralleled by HRP-PP immobilization onto the gel, increased both the activity of the enzyme and its operational stability.
已合成辣根过氧化物酶(HRP)与绳状青霉46.1葡萄糖氧化酶(GO)的聚合物和共聚物,并对其催化特性进行了表征(研究了每种酶的游离形式和固定化形式)。在等摩尔量的GO和HRP存在下于水介质中进行的苯酚和4-氨基安替比林(4-AAP)的共氧化反应,其有效米氏常数(K(M))和催化常数(k(cat))分别为:苯酚为0.58 mM和20.9 s⁻¹,葡萄糖为14.6 mM和18.4 s⁻¹。GO的聚合产物(GO-PPs)的催化效率取决于其聚集程度。GO + HRP-PP和HRP + GO-PP的组合以及共聚物HRP*-GO-PP被证明有望作为基于酶的分析系统的试剂。当吸附在氢氧化铝凝胶上时,GO-PPs表现出比非聚合酶更高的催化活性。在与活化的HRP形成的GO-PP共聚物的情况下,观察到GO-PP在无机载体上的活性保留最大。在氢氧化锌凝胶存在下HRP的聚合,同时将HRP-PP固定在凝胶上,提高了酶的活性及其操作稳定性。