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A Further Step in the Kinetic Characterisation of the Tyrosinase Enzymatic System

机译:酪氨酸酶系统动力学表征的进一步步骤

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摘要

Tyrosinase is a cuproprotein that hydroxylates monophenols to o-diphenols, which it then oxidises to o-quinones, using molecular oxygen. Based on kinetic studies of the steady state and measuring product formation during the action of the enzyme on o-diphenols, we determine the Michaelis constant and the maximum velocity, respectively. Similarly, we determine these kinetic constants for the enzyme acting on monophenols. From these constants obtained for a monophenol/o-diphenol pair, it is possible to calculate a new constant, the Michaelis constant of the enzyme for an o-diphenol acting on the corresponding monophenol, by means of an equation that relates the above-mentioned kinetic constants. Furthermore, it is also possible to establish the relation between the Michaelis constants for the oxygen in the presence of monophenol and in the presence of o-diphenol from the relation between the maximum velocities of the monophenol and o-diphenol experimentally determined by measuring aminochrome. From applying the equations described above to the kinetic data of the many tyrosinases described in the literature, we find that the Michaelis constant for the o-diphenol in the presence of monophenol is much lower than that obtained when the enzyme acts on o-diphenol alone. The Michaelis constant for oxygen in the presence of monophenol is also much lower than that obtained in the presence of its o-diphenol.
机译:酪氨酸酶是一种铜蛋白,可将单酚羟基化为邻二酚,然后利用分子氧将其氧化为邻醌。根据对稳态的动力学研究并测量酶对邻二酚的作用过程中形成的产物,我们分别确定了米氏常数和最大速度。同样,我们确定了作用于单酚的酶的动力学常数。从针对单酚/邻二酚对获得的这些常数,可以通过与上述相关的方程来计算新常数,即作用于相应的单酚的邻二酚酶的米氏常数。动力学常数。此外,还可以根据通过测量氨基色素实验确定的单酚和邻二酚的最大速度之间的关系,建立在存在单酚和存在邻二酚的情况下氧的米氏常数之间的关系。通过将上述方程式应用于文献中描述的许多酪氨酸酶的动力学数据,我们发现在存在单酚的情况下邻二酚的米氏常数要比酶单独作用于邻二酚时所获得的常数低得多。 。在单酚存在下,氧气的米氏常数也远低于在邻二酚存在下的米氏常数。

著录项

  • 来源
    《Journal of Mathematical Chemistry》 |2007年第4期|393-406|共14页
  • 作者单位

    GENZ: Grupo de Investigación de Enzimología Departamento de Bioquímica y Biología Molecular-A Facultad de Biología Universidad de Murcia E-30100 Espinardo Murcia Spain;

    GENZ: Grupo de Investigación de Enzimología Departamento de Bioquímica y Biología Molecular-A Facultad de Biología Universidad de Murcia E-30100 Espinardo Murcia Spain;

    GENZ: Grupo de Investigación de Enzimología Departamento de Bioquímica y Biología Molecular-A Facultad de Biología Universidad de Murcia E-30100 Espinardo Murcia Spain;

    GENZ: Grupo de Investigación de Enzimología Departamento de Bioquímica y Biología Molecular-A Facultad de Biología Universidad de Murcia E-30100 Espinardo Murcia Spain;

    GENZ: Grupo de Investigación de Enzimología Departamento de Bioquímica y Biología Molecular-A Facultad de Biología Universidad de Murcia E-30100 Espinardo Murcia Spain;

    GENZ: Grupo de Investigación de Enzimología Departamento de Bioquímica y Biología Molecular-A Facultad de Biología Universidad de Murcia E-30100 Espinardo Murcia Spain;

    Departamento de Química-Física Escuela Politécnica Superior Universidad de Castilla la Mancha Avd. España s Campus Universitario E-02071 Albacete Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    biological source; characterisation; kinetic constant; reaction mechanism; Tyrosinase;

    机译:生物来源;表征;动力学常数;反应机理;酪氨酸酶;

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