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计算机预测鉴定能够与蜕皮激素受体结合的化学物质。

In Silico Identification of Chemicals Capable of Binding to the Ecdysone Receptor.

机构信息

School of Pharmacy and Biomolecular Sciences, Liverpool John Moores University, Liverpool, United Kingdom.

School of Forensic and Applied Sciences, University of Central Lancashire, Preston, Lancashire, United Kingdom.

出版信息

Environ Toxicol Chem. 2020 Jul;39(7):1438-1450. doi: 10.1002/etc.4733. Epub 2020 Jun 4.

DOI:10.1002/etc.4733
PMID:32335943
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7781155/
Abstract

The process of molting, known alternatively as ecdysis, is a feature integral in the life cycles of species across the arthropod phylum. Regulation occurs as a function of the interaction of ecdysteroid hormones with the arthropod nuclear ecdysone receptor-a process preceding the triggering of a series of downstream events constituting an endocrine signaling pathway highly conserved throughout environmentally prevalent insect, crustacean, and myriapod organisms. Inappropriate ecdysone receptor binding and activation forms the essential molecular initiating event within possible adverse outcome pathways relating abnormal molting to mortality in arthropods. Definition of the characteristics of chemicals liable to stimulate such activity has the potential to be of great utility in mitigation of hazards posed toward vulnerable species. Thus the aim of the present study was to develop a series of rule-sets, derived from the key structural and physicochemical features associated with identified ecdysone receptor ligands, enabling construction of Konstanz Information Miner (KNIME) workflows permitting the flagging of compounds predisposed to binding at the site. Data describing the activities of 555 distinct chemicals were recovered from a variety of assays across 10 insect species, allowing for formulation of KNIME screens for potential binding activity at the molecular initiating event and adverse outcome level of biological organization. Environ Toxicol Chem 2020;39:1438-1450. © 2020 The Authors. Environmental Toxicology and Chemistry published by Wiley Periodicals LLC on behalf of SETAC.

摘要

蜕皮过程,又称蜕皮,是节肢动物门中许多物种生命周期的一个固有特征。调节作用是由蜕皮激素与节肢动物核蜕皮激素受体相互作用的功能引起的,这是触发一系列下游事件的过程,构成了高度保守的内分泌信号通路,在环境中普遍存在的昆虫、甲壳类动物和多足类动物中都存在。蜕皮激素受体的结合和激活不当,是将蜕皮异常与节肢动物死亡联系起来的可能不利后果途径中关键的分子起始事件。定义可能刺激这种活性的化学物质的特征,有可能极大地减少对脆弱物种构成的危害。因此,本研究的目的是开发一系列规则集,这些规则集源于与已鉴定的蜕皮激素受体配体相关的关键结构和物理化学特征,从而构建 Konstanz Information Miner(KNIME)工作流程,以标记易于在该位点结合的化合物。从 10 种昆虫的各种测定中检索到描述 555 种不同化学物质活性的数据,从而可以制定 KNIME 屏幕,以在分子起始事件和不利后果水平的生物组织中筛选潜在的结合活性。Environ Toxicol Chem 2020;39:1438-1450。 © 2020 作者。环境毒物化学由 Wiley Periodicals LLC 代表 SETAC 出版。

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本文引用的文献

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Release of chitobiase as an indicator of potential molting disruption in juvenile Daphnia magna exposed to the ecdysone receptor agonist 20-hydroxyecdysone.几丁质酶的释放作为暴露于蜕皮激素受体激动剂20-羟基蜕皮激素的大型溞幼体潜在蜕皮破坏的指标。
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