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首页> 外文期刊>Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry >Catalytic properties of variously immobilized mushroom tyrosinase: A kinetic study for future development of biomimetic amperometric biosensors
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Catalytic properties of variously immobilized mushroom tyrosinase: A kinetic study for future development of biomimetic amperometric biosensors

机译:各种固定的蘑菇酪氨酸酶的催化性能:对生物菊浆化生物传感器未来发展的动力学研究

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摘要

Mushroom tyrosinase was immobilized by direct embedding into electrode material (modified carbon paste electrode), incorporation of cross-linked enzyme aggregates into a polymer membrane (glassy carbon electrode covered by thin layer of Nafion (R)), and covalent attachment using self-assembled monolayers (gold electrode with the chemically bound enzyme). Both, standard UV-Vis spectrophotometry and amperometry in a batch configuration are presented as complementary methods to study the tyrosinase enzyme kinetics, whose catecholase activity results in electroactive products (ortho-quinones). Due to higher sensitivity of amperometric detection, evident advantage in the enzyme consumption was obtained. Prepared amperometric tyrosinase biosensors were characterized using cyclic voltammetry and atomic force microscopy. The Michaelis constant values of immobilized and unbound tyrosinase (free enzyme solution) towards dopamine and catechol were compared. The apparent Michaelis constant values for immobilized tyrosinase are significantly lower than the declared value of 0.840 mmol L-1 dopamine for the unbound enzyme. The enzymetyrosinase arranged in self-assembledmonolayer serves as an efficient sensor due to lowapparent Michaelis constant of 0.061 mmol L-1 dopamine and high maximum reaction velocity of 0.458 mu A s(-1). This fact reflects the ideal arrangement of enzymemolecules causing high availability of the binding site. Tris-glycine sodiumdodecyl sulphate polyacrylamide gel electrophoresis and atomic force microscopy clarified that the protein of molecular weight 25 kDa is bound preferably on chemically modified gold electrode. A sensor prepared by the immobilization of tyrosinase on gold electrode results in higher catecholase activity towards dopamine than in case of CPE and GC electrodes, where enzyme is immobilized physically.
机译:通过直接嵌入电极材料(改性碳浆料电极)中固定蘑菇酪氨酸酶,将交联酶聚集体掺入聚合物膜中(由Nafion薄层(R)覆盖的玻璃碳电极),并使用自组装的共价连接单层(金电极,具有化学结合的酶)。批量构造的标准UV-VIS分光光度法和安培法均以研究酪氨酸酶酶动力学的互补方法,其儿茶酚酶活性导致电活性产物(邻醌)。由于浓度检测的敏感性较高,获得了酶消耗中的明显优势。使用循环伏安法和原子力显微镜表征制备的安培酪氨酸酶生物传感器。比较了朝向多巴胺和儿茶酚的固定化和未结合酪氨酸酶(游离酶溶液)的Michaelis常数值。用于固定化酪氨酸酶的表观迈克莱斯恒定值显着低于未结合酶的0.840mmol L-1多巴胺的声明值。在自组装的蒙多甲烷中排列的苄滤蛋白酶用作0.061mmol L-1多巴胺的低表达Michaelis常数和0.458μmS(-1)的高最大反应速度,作为有效的传感器。这一事实反映了酶分子的理想布置,导致结合位点的高可用性。 Tris-甘氨酸钠二癸基硫酸盐聚丙烯酰胺凝胶电泳和原子力显微镜阐明了分子量25kDa的蛋白质优选在化学改性的金电极上。通过固定酪氨酸酶对金电极的固定制备的传感器导致多巴胺的高等儿茶酚酶活性而不是CPE和GC电极,其中酶在物理上固定。

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