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Tyrosinase inhibition by isophthalic acid: Kinetics and computational simulation

机译:间苯二甲酸对酪氨酸酶的抑制作用:动力学和计算模拟

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Using inhibition kinetics and computational simulation, we studied the reversible inhibition of tyrosinase by isophthalic acid (IPA). IPA inhibited tyrosinase in a complex manner with K_i=17.8±1.8mM. Measurements of intrinsic and ANS-binding fluorescence showed that IPA induced no changes in tertiary protein structure. For further insight, we predicted the 3D structure of tyrosinase and used a docking algorithm to simulate binding between tyrosinase and IPA. Simulation was successful (binding energies for Dock6.3: -25.19kcal/mol and for AutoDock4.2: -4.28kcal/mol), suggesting that IPA interacts with PRO175 or VAL190. This strategy of predicting tyrosinase inhibition based on hydroxyl group number and orientation may prove useful for the screening of potential tyrosinase inhibitors.
机译:使用抑制动力学和计算模拟,我们研究了间苯二甲酸(IPA)对酪氨酸酶的可逆抑制作用。 IPA以K_i = 17.8±1.8mM的复杂方式抑制酪氨酸酶。固有和ANS结合荧光的测量结果表明,IPA不会引起三级蛋白质结构的变化。为了进一步了解,我们预测了酪氨酸酶的3D结构并使用了对接算法来模拟酪氨酸酶和IPA之间的结合。模拟成功(Dock6.3的束缚能:-25.19kcal / mol和AutoDock4.2的束缚能:-4.28kcal / mol),表明IPA与PRO175或VAL190相互作用。这种基于羟基数目和方向预测酪氨酸酶抑制作用的策略可能证明对筛选潜在的酪氨酸酶抑制剂有用。

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