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Combined Kinetic Studies and Computational Analysis on Kojic Acid Analogs as Tyrosinase Inhibitors

机译:曲酸类似物作为酪氨酸酶抑制剂的组合动力学研究和计算分析

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摘要

Tyrosinase is a key enzyme in melanin synthesis and widely distributed in plants and animals tissues. In mammals, this enzyme is related to pigment production, involved in wound healing, primary immune response and it can also contribute to catecholamines synthesis in the brain. Consequently, tyrosinase enzyme represents an attractive and selective target in the field of the medicine, cosmetics and bio-insecticides. In this paper, experimental kinetics and computational analysis were used to study the inhibition of tyrosinase by analogs of Kojic acid. The main interactions occurring between inhibitors-tyrosinase complexes and the influence of divalent cation (Cu2+) in enzymatic inhibition were investigated by using molecular docking, molecular dynamic simulations and electrostatic binding free energy by using the Linear Interaction Energy (LIE) method. The results showed that the electrostatic binding free energy are correlated with values of constant inhibition (r2 = 0.97).Thus, the model obtained here could contribute to future studies of this important system and, therefore, eventually facilitate development of tyrosinase inhibitors.
机译:酪氨酸酶是黑色素合成中的关键酶,广泛分布在动植物组织中。在哺乳动物中,这种酶与色素生成有关,参与伤口愈合,初次免疫反应,还可以促进大脑中儿茶酚胺的合成。因此,酪氨酸酶代表了药物,化妆品和生物杀虫剂领域中有吸引力的选择性靶标。本文通过实验动力学和计算分析研究了曲酸类似物对酪氨酸酶的抑制作用。利用分子对接,分子动力学模拟和静电结合自由能,通过线性相互作用研究了抑制剂-酪氨酸酶复合物之间主要的相互作用以及二价阳离子(Cu 2 + )对酶促抑制作用的影响。能量(LIE)方法。结果表明,静电结合自由能与恒定抑制值相关(r 2 = 0.97)。因此,此处获得的模型可能有助于对该重要系统的进一步研究,因此最终促进酪氨酸酶抑制剂的开发。

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