首页> 外文期刊>Biochimica et biophysica acta: BBA: International journal of biochemistry, biophysics and molecular biololgy. Proteins and Proteomics >Kinetic characterisation of o-aminophenols and aromatic o-diamines as suicide substrates of tyrosinase
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Kinetic characterisation of o-aminophenols and aromatic o-diamines as suicide substrates of tyrosinase

机译:酪氨酸酶自杀底物邻氨基酚和芳香族邻二胺的动力学表征

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摘要

We study the suicide inactivation of tyrosinase acting on o-aminophenols and aromatic o-diamines and compare the results with those obtained for the corresponding o-diphenols. The catalytic constants follow the order aromatic o-diamines o-aminophenols o-diphenols, which agrees with the view that the transfer of the proton to the peroxide group of the oxy-tyrosinase form is the slowest step in the catalytic cycle. As regards the apparent inactivation constant, it remains within the same order of magnitude, although slightly lower in the case of the aromatic o-diamines and o-aminophenols than o-diphenols: o-diamines o-aminophenols o-diphenols. The efficiency of the second nucleophilic attack of substrate on CuA seems to be the determining factor in the bifurcation of the inactivation and catalytic pathways. This attack is more efficient in o-diamines (where it attacks a nitrogen atom) than in o-aminophenols and o-diphenols (where it attacks an oxygen atom), favouring the catalytic pathway and slowing down the inactivation pathway. The inactivation step is the slowest of the whole process. The values of r, the number of turnovers that 1 mol of enzyme carries out before being inactivated, follows the order aromatic o-diamines o-aminophenols o-diphenols. As regards the Michaelis constants, that of the o-diamines is slightly lower than that of the o-diphenols, while that of the o-aminophenols is slightly greater than that observed for the o-diphenols. As a consequence of the above, the inactivation efficiency, λ max/K m S, follows this order: o-diphenols o-aminophenols aromatic o-diamines.
机译:我们研究了作用于邻氨基酚和芳香族邻二胺的酪氨酸酶的自杀灭活,并将结果与​​相应邻邻二酚的结果进行了比较。催化常数遵循芳族邻二胺<邻氨基酚<邻二酚的顺序,这与以下观点一致:质子转移至氧酪氨酸酶形式的过氧化物基团是催化循环中最慢的步骤。关于表观失活常数,尽管在芳族邻二胺和邻氨基酚的情况下略低于邻二酚,但其保持在相同的数量级:邻二胺<邻氨基酚<邻二酚。底物对CuA的第二次亲核攻击的效率似乎是灭活和催化途径分叉的决定因素。这种攻击在邻二胺(攻击一个氮原子)上比在邻氨基酚和邻二酚(攻击一个氧原子)上更有效,有利于催化途径并减缓失活途径。灭活步骤是整个过程中最慢的步骤。 r的值,即1摩尔酶在失活前进行的周转数,按照芳族邻二胺<邻氨基酚<邻二酚的顺序排列。关于米氏常数,邻二胺的米氏常数稍低于邻二酚的米氏常数,而邻氨基苯酚的米氏常数略大于邻二酚的米氏常数。由于上述结果,灭活效率λmax / K m S遵循以下顺序:邻二酚>邻氨基酚>芳香族邻二胺。

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