首页> 外文期刊>Insect Biochemistry and Molecular Biology >Towards Coleoptera-specific high-throughput screening systems for compounds with ecdysone activity: development of EcR reporter assays using weevil (Anthonomus grandis)-derived cell lines and in silico analysis of ligand binding to A. grandis EcR ligand-binding pocket
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Towards Coleoptera-specific high-throughput screening systems for compounds with ecdysone activity: development of EcR reporter assays using weevil (Anthonomus grandis)-derived cell lines and in silico analysis of ligand binding to A. grandis EcR ligand-binding pocket

机译:面向具有蜕皮激素活性的化合物的鞘翅目特异性高通量筛选系统:使用象鼻虫(Anthonomus grandis)衍生的细胞系开发EcR报告基因分析,并利用计算机模拟分析配体结合到A. grandis的EcR配体结合口袋

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Molting in insects is regulated by ecdysteroids and juvenile hormones. Several synthetic non-steroidal ecdysone agonists are on the market as insecticides. These ecdysone agonists are dibenzoylhydrazine (DBH) analogue compounds that manifest their toxicity via interaction with the ecdysone receptor (EcR). Of the four commercial available ecdysone agonists, three (tebufenozide, methoxyfenozide and chromafenozide) are highly lepidopteran specific, one (halofenozide) is used to control coleopteran and lepidopteran insects in turf and ornamentals. However, compared to the very high binding affinity of these DBH analogues to lepidopteran EcRs, halofenozide has a low binding affinity for coleopteran EcRs. For the discovery of ecdysone agonists that target non-lepidopteran insect groups, efficient screening systems that are based on the activation of the EcR are needed. We report here the development and evaluation of two coleopteran-specific reporter-based screening systems to discover and evaluate ecdysone agonists. The screening systems are based on the cell lines BRL-AG-3A and BRL-AG-3C that are derived from the weevil Anthonomus grandis, which can be efficiently transduced with an EcR reporter cassette for evaluation of induction of reporter activity by ecdysone agonists. We also cloned the almost full length coding sequence of EcR expressed in the cell line BRL-AG-3C and used it to make an initial in silico 3D-model of its ligand-binding pocket docked with ponasterone A and tebufenozide.
机译:蜕皮激素和幼体激素调节昆虫的蜕皮。市场上有几种合成的非甾体蜕皮激素激动剂作为杀虫剂。这些蜕皮激素激动剂是二苯甲酰肼(DBH)类似物化合物,通过与蜕皮激素受体(EcR)的相互作用表现出毒性。在四种市售的蜕皮激素激动剂中,三种(丁苯芬唑,甲氧苯磺酰胺和苯甲酰肼)是高度鳞翅目昆虫特异性的,一种(卤氟苯胺)用于控制草皮和观赏植物中的鞘翅目和鳞翅目昆虫。但是,与这些DBH类似物对鳞翅目EcR的非常高的结合亲和力相比,氟苯乙肼对鞘翅目EcR的低亲和力。为了发现靶向非鳞翅目昆虫群的蜕皮激素激动剂,需要基于EcR激活的有效筛选系统。我们在这里报告两个鞘翅目特定的记者为基础的筛选系统的发现和评估,以发现和评估蜕皮激素激动剂。筛选系统基于衍生自象鼻虫Anthonomus grandis的细胞系BRL-AG-3A和BRL-AG-3C,可以用EcR报告盒有效地转导它们,以评估蜕皮激素激动剂对报告子活性的诱导作用。我们还克隆了在细胞系BRL-AG-3C中表达的EcR的几乎全长编码序列,并使用它来构建其与配体酮A和tebufenozide对接的配体结合口袋的初始计算机3D模型。

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