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文蛤脑乙酰胆碱酯酶的特性:在农药和金属离子生物监测中的应用前景。

Characterization of brain acetylcholinesterase of bentonic fish Hoplosternum littorale: Perspectives of application in pesticides and metal ions biomonitoring.

机构信息

Laboratório de Enzimologia - LABENZ, Departamento de Bioquímica, Universidade Federal de Pernambuco, Recife, PE, Brasil; Laboratório de Biologia Molecular - BioMol, Departamento de Bioquímica, Universidade Federal de Pernambuco - UFPE, Recife, PE, Brazil.

Laboratório de Enzimologia - LABENZ, Departamento de Bioquímica, Universidade Federal de Pernambuco, Recife, PE, Brasil; Laboratório de Compostos Orgânicos em Ecossistemas Costeiros e Marinhos - OrganoMAR, Departamento de Oceanografia, Universidade Federal de Pernambuco - UFPE, Recife, PE, Brazil.

出版信息

Aquat Toxicol. 2018 Dec;205:213-226. doi: 10.1016/j.aquatox.2018.10.017. Epub 2018 Oct 26.

Abstract

Acetylcholinesterase (AChE; EC 3.1.1.7) is a serine hydrolase, whose main function is to modulate neurotransmission at cholinergic synapses. It is, therefore, the primary target of some pesticides and heavy metals. Its inhibition in aquatic organisms has been used as an indicator of the presence of these pollutants in water bodies. The present study aimed to characterize physicochemical and kinetic parameters of brain AChE in the benthic fish Hoplosternum littorale and to analyze the in vitro effects of pesticides (dichlorvos, diazinon, chlorpyrifos, parathion-methyl, temephos, carbaryl, carbofuran, aldicarb, diflubenzuron, novaluron and pyriproxyfen) and metal ions (As, Cd, Cu, Fe, Mn, Mg, K, Pb, Hg, Zn) investigating the potential of this enzyme as environmental biomarker based on current regulations. Specific substrates and inhibitors have indicated AChE to be the predominant cholinesterase (ChE) in the brain of H. littorale. Peak activity was observed at pH 8.0 and 30 °C. The enzymatic activity is otherwise moderately thermostable (≈ 50% activity at 45 °C). The enzyme can reduce the activation energy of acetylthiocholine hydrolysis reaction to 8.34 kcal mol while reaching a rate enhancement of 10. Among the pesticides under study, dichlorvos presented an IC value below the maximum concentrations allowed by legislation. This study presents the first report on the inhibition of brain AChE activity from Siluriformes by the pesticides novaluron and pyriproxyfen. Mercury ion also exerted a strong inhibitory effect on its enzymatic activity. The H. littorale enzyme thus has the potential to function as an in vitro biomarker for the presence of the pesticide dichlorvos as well as mercury in areas of mining and industrial discharge.

摘要

乙酰胆碱酯酶(AChE;EC 3.1.1.7)是一种丝氨酸水解酶,其主要功能是调节胆碱能突触的神经递质传递。因此,它是一些杀虫剂和重金属的主要靶标。其在水生生物中的抑制作用已被用作水体中这些污染物存在的指标。本研究旨在表征底栖鱼类 Hoplosternum littorale 脑 AChE 的理化和动力学参数,并分析杀虫剂(敌百虫、二嗪农、毒死蜱、甲基对硫磷、硫丹、甲萘威、呋喃丹、涕灭威、除虫脲、双氧威和吡虫啉)和金属离子(砷、镉、铜、铁、锰、镁、钾、铅、汞、锌)对其的体外影响,根据现行法规研究该酶作为环境生物标志物的潜力。特定的底物和抑制剂表明 AChE 是 H. littorale 脑中主要的胆碱酯酶(ChE)。在 pH8.0 和 30°C 时观察到峰值活性。该酶的活性在 45°C 时适度热稳定(≈50%活性)。该酶可以将乙酰硫代胆碱水解反应的活化能降低到 8.34kcal/mol,同时达到 10 的速率增强。在所研究的杀虫剂中,敌百虫的 IC 值低于法规允许的最大浓度。本研究首次报道了 novaluron 和吡虫啉对 Siluriformes 脑 AChE 活性的抑制作用。汞离子也对其酶活性产生强烈抑制作用。因此,H. littorale 酶有可能作为存在杀虫剂敌百虫和汞的体外生物标志物,用于矿区和工业排放区。

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