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On the interpretation of tyrosinase inhibition kinetics

机译:关于酪氨酸酶抑制动力学的解释

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Tyrosinases (monophenol monooxygenases, EC 1.14.18.1) utilize a reaction mechanism that involves two intertwined catalytic cycles and at least three different ligand-binding enzyme forms. Therefore a variety of different inhibition types may arise in inhibition experiments, depending on the binding mode of the compound studied. Here we discuss a steady-state equation that describes inhibition of the diphenolase cycle of tyrosinase catalysis in a general way. In addition, we employ numerical simulations to explore the kinetic outcome of various binding schemes. As the full equation is far too complex to be applicable for data evaluation by curve fitting, we propose to use the general modifier scheme of Botts-Morales for fitting and demonstrate that especially the value of parameter alpha of the equation allows conclusions about the binding mode of the inhibitor. The approach is exemplified by selected data describing the inhibition of human tyrosinase by typical inhibitors.
机译:酪氨酸酶(单酚单加氧酶,EC 1.14.18.1)利用一种反应机理,该机理涉及两个相互缠绕的催化循环和至少三种不同的配体结合酶形式。因此,取决于所研究化合物的结合模式,在抑制实验中可能会出现多种不同的抑制类型。在这里,我们讨论一个稳态方程,该方程描述了以一般方式抑制酪氨酸酶催化的双酚酶循环。另外,我们采用数值模拟来探索各种结合方案的动力学结果。由于整个方程太复杂而无法通过曲线拟合进行数据评估,因此我们建议使用Botts-Morales的通用修正方案进行拟合,并证明特别是方程的参数alpha值可以得出有关绑定模式的结论的抑制剂。该方法由描述典型抑制剂对人酪氨酸酶抑制作用的选定数据举例说明。

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