首页> 外文期刊>Pesticide Biochemistry and Physiology >A cell-based reporter assay for screening for EcR agonist/antagonist activity of natural ecdysteroids in Lepidoptera (Bm5) and Diptera (S2) cell cultures, followed by modeling of ecdysteroid-EcR interactions and normal mode analysis.
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A cell-based reporter assay for screening for EcR agonist/antagonist activity of natural ecdysteroids in Lepidoptera (Bm5) and Diptera (S2) cell cultures, followed by modeling of ecdysteroid-EcR interactions and normal mode analysis.

机译:一种基于细胞的报告基因检测,用于筛选鳞翅目(Bm5)和双翅目(S2)细胞培养物中天然蜕皮甾体的EcR激动剂/拮抗剂活性,然后对蜕皮甾体-EcR相互作用进行建模并进行正常模式分析。

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摘要

Ecdysteroid signal transduction is a key process in insect development and therefore an important target for insecticide development. We employed an in vitro cell-based reporter bioassay for the screening of potential ecdysone receptor (EcR) agonistic and antagonistic compounds. Natural ecdysteroids were assayed with ecdysteroid-responsive cell line cultures that were transiently transfected with the reporter plasmid ERE-b.act.luc. We used the dipteran Schneider S2 cells of Drosophila melanogaster and the lepidopteran Bm5 cells of Bombyx mori, representing important pest insects in medicine and agriculture. Measurements showed an EcR agonistic activity only for cyasterone both in S2 (EC50=3.3 micro M) and Bm5 cells (EC50=5.3 micro M), which was low compared to that of the commercial dibenzoylhydrazine-based insecticide tebufenozide (EC50=0.71 micro M and 0.00089 micro M, respectively). Interestingly, a strong antagonistic activity was found for castasterone in S2 cells with an IC50 of 0.039 micro M; in Bm5 cells this effect only became visible at much higher concentrations (IC50=18 micro M). To gain more insight in the EcR interaction, three-dimensional modeling of dipteran and lepidopteran EcR-LBD was performed. In conclusion, we showed that the EcR cell-based reporter bioassay tested here is a useful and practical tool for the screening of candidate EcR agonists and antagonists. The docking experiments as well as the normal mode analysis provided evidence that the antagonist activity of castasterone may be through direct binding with the receptor with specific changes in protein flexibility. The search for new ecdysteroid-like compounds may be particularly relevant for dipterans because the activity of dibenzoylhydrazines appears to be correlated with an extension of the EcR-LBD binding pocket that is prominent in lepidopteran receptors but less so in the modeled dipteran structure.
机译:蜕皮甾类信号转导是昆虫发育的关键过程,因此是杀虫剂发展的重要目标。我们采用了基于体外细胞的报告基因生物测定法,用于筛选潜在的蜕皮激素受体(EcR)激动剂和拮抗化合物。用经报告质粒ERE-b.act.luc瞬时转染的对蜕皮激素反应的细胞系培养物测定天然蜕皮激素。我们使用了果蝇的Deptophilan Schneider S2细胞和家蚕的鳞翅目Bm5细胞,它们代表了医学和农业上的重要害虫。测量结果显示,S2(EC 50 = 3.3 micro M)和Bm5细胞(EC 50 = 5.3 micro M)中的胱氨酸酯仅具有EcR激动活性,相比之下较低与市售的基于二苯甲酰肼的杀虫剂Tebufenozide相比(分别为EC 50 = 0.71 micro M和0.00089 micro M)。有趣的是,在IC 50 50 为0.039 micro M的S2细胞中发现了针对Castasterone的强拮抗活性。在Bm5细胞中,只有在高得多的浓度(IC 50 = 18 micro M)下,这种作用才可见。为了在EcR相互作用中获得更多见解,对立足和鳞翅目EcR-LBD进行了三维建模。总之,我们证明了此处测试的基于EcR细胞的报道分子生物测定法是筛选候选EcR激动剂和拮抗剂的有用和实用工具。对接实验和正常模式分析提供了证据,证明了栗固酮的拮抗活性可能是通过与受体的直接结合而蛋白柔韧性发生了特定变化。寻找新的蜕皮甾类化合物可能与二萜类化合物特别相关,因为二苯甲酰肼的活性似乎与鳞翅目受体中突出的EcR-LBD结合口袋的延伸相关,而在模拟的二萜结构中却不那么重要。

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