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3D-QSAR and molecular docking studies of benzaldehyde thiosemicarbazone, benzaldehyde, benzoic acid, and their derivatives as phenoloxidase inhibitors.

机译:苯甲醛硫代半脲,苯甲醛,苯甲酸及其衍生物作为酚氧化酶抑制剂的3D-QSAR和分子对接研究。

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摘要

Phenoloxidase (PO), also known as tyrosinase, is a key enzyme in insect development, responsible for catalyzing the hydroxylation of tyrosine into o-diphenols and the oxidation of o-diphenols into o-quinones. Inhibition of PO may provide a basis for novel environmentally friendly insecticides. In the present study, we determined the inhibitory activities and IC(50) values of 57 compounds belonging to the benzaldehyde thiosemicarbazone, benzaldehyde, and benzoic acid families against phenoloxidase from Pieris rapae (Lepidoptera) larvae. In addition, the inhibitory kinetics of 4-butylbenzaldehyde thiosemicarbazone against PO was measured in air-saturated solutions for the oxidation of L-3,4-dihydroxyphenylalanine (L-DOPA). The results indicated that the compound is a reversible noncompetitive inhibitor. The bioactivity results were used to construct three-dimensional quantitative structure-activity relationship (3D-QSAR) models using two molecular field analysis techniques: comparative molecular field analysis (CoMFA) and comparative molecular similarity indices analysis (CoMSIA). After carrying out superimposition using common substructure-based alignment, robust and predictive 3D-QSAR models were obtained from CoMFA (q(2)=0.926, r(2)=0.986) and CoMSIA (q(2)=0.933, r(2)=0.984) with six optimum components. The 3D-QSAR model built here will provide hints for the design of novel PO inhibitors. The molecular interactions between the ligands and the target were studied using a flexible docking method (FlexX). The best scored candidates were docked flexibly, and the interaction between the representative compound 4-butylbenzaldehyde thiosemicarbazone and the active site was elucidated in detail.
机译:苯酚氧化酶(PO),也称为酪氨酸酶,是昆虫发育中的关键酶,负责催化酪氨酸的羟基化为邻二酚和将邻二酚氧化为邻醌。 PO的抑制可以为新型环保杀虫剂提供基础。在本研究中,我们确定了57种属于苯甲醛硫代半脲,苯甲醛和苯甲酸家族的化合物对菜青虫(鳞翅目)幼虫中酚氧化酶的抑制活性和IC(50)值。此外,在空气饱和的溶液中测量了L-DOPA氧化L-3,4-二羟基苯丙氨酸时,4-丁基苯甲醛硫半脲对PO的抑制动力学。结果表明该化合物是可逆的非竞争性抑制剂。使用两种分子场分析技术将生物活性结果用于构建三维定量构效关系(3D-QSAR)模型:比较分子场分析(CoMFA)和比较分子相似性指数分析(CoMSIA)。使用常见的基于子结构的对齐方式进行叠加后,从CoMFA(q(2)= 0.926,r(2)= 0.986)和CoMSIA(q(2)= 0.933,r(2)获得了鲁棒且可预测的3D-QSAR模型)= 0.984),并具有六个最佳分量。此处构建的3D-QSAR模型将为新型PO抑制剂的设计提供提示。使用柔性对接方法(FlexX)研究了配体与靶标之间的分子相互作用。得分最高的候选者将灵活地停靠,并详细阐明了代表性化合物4-丁基苯甲醛硫代半脲与活性部位之间的相互作用。

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