National Institute of Applied Sciences and Technology, Tunis, Tunisia.
Food Chem Toxicol. 2010 Mar;48(3):957-63. doi: 10.1016/j.fct.2010.01.006. Epub 2010 Jan 12.
Polyphenol oxidase (PPO) catalyzes the oxidation of o-diphenols to their respective quinones which undergo autopolymerization and form dark pigments. The interaction of PPO with various substrates and effectors remains the focus of intensive investigations due to the enzyme's key role in pigments biosynthesis including animal melanogenesis and fruit/fungi enzymatic browning. In this study, the effect of a range of commonly used pesticides on the enzyme activity has been evaluated using the purified quince (Cydonia oblonga Miller) PPO. The biochemical analysis showed that, in the presence of high pesticide concentrations, the enzyme was competitively inhibited, particularly with benomyl, carbaryl, deltamethrine and parathion methyl for which inhibition constants (K(i)) were 8.3, 5.7, 12 and 4 microM, respectively. At lower pesticide concentrations (2-10 microM), however, the catecholase activity was significantly activated (p<0.01), suggesting a homotropic behavior of these chemical compounds. Furthermore, the use of in silico structure-based analyses, known as computational docking, highlighted the nature of the PPO-pesticides interactions and confirmed the in vitro observations. Catechol substrate and parathion methyl inhibitor showed lower total energy scores of -120.06 and -117.4 3 kcal mol(-1), indicating that these ligands had higher PPO-binding affinities. The obtained data bring to light new pesticide functional features of great interest in the medicinal, agro-chemical and environmental circles.
多酚氧化酶(PPO)催化邻二酚氧化为相应的醌,醌发生自聚合形成深色色素。由于 PPO 在包括动物黑色素生成和果实/真菌酶促褐变在内的色素生物合成中起着关键作用,因此其与各种底物和效应物的相互作用仍然是密集研究的焦点。在这项研究中,使用纯化的榅桲(Cydonia oblonga Miller)PPO 评估了一系列常用农药对酶活性的影响。生化分析表明,在高农药浓度存在下,酶受到竞争性抑制,尤其是苯菌灵、西维因、溴氰菊酯和甲基对硫磷,其抑制常数(K(i))分别为 8.3、5.7、12 和 4 μM。然而,在较低的农药浓度(2-10 μM)下,儿茶酚酶活性显著激活(p<0.01),表明这些化学化合物具有同型作用。此外,使用基于结构的计算对接等计算结构分析方法突出了 PPO-农药相互作用的性质,并证实了体外观察结果。儿茶酚底物和甲基对硫磷抑制剂的总能量评分分别为-120.06 和-117.43 kcal mol(-1),表明这些配体与 PPO 具有更高的结合亲和力。获得的数据揭示了新的农药功能特征,这些特征在医学、农业化学和环境领域具有极大的兴趣。