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Splice form variant and amino acid changes in MDR49 confers DDT resistance in transgenic Drosophila

机译:MDR49中的剪接形式变异和氨基酸变化赋予果蝇DDT抗性

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摘要

The ATP-binding cassette (ABC) transporters represent a superfamily of proteins that have important physiological roles in both prokaryotes and eukaryotes. In insects, ABC transporters have previously been implicated in insecticide resistance. The 91-R strain of Drosophila melanogaster has been intensely selected with DDT over six decades. A recent selective sweeps analysis of 91-R implicated the potential role of MDR49, an ABC transporter, in DDT resistance, however, to date the details of how MDR49 may play a role in resistance have not been elucidated. In this study, we investigated the impact of structural changes and an alternative splicing event in MDR49 on DDT-resistance in 91-R, as compared to the DDT susceptible strain 91-C. We observed three amino acid differences in MDR49 when 91-R was compared with 91-C, and only one isoform (MDR49B) was implicated in DDT resistance. A transgenic Drosophila strain containing the 91-R-MDR49B isoform had a significantly higher LD50 value as compared to the 91-C-MDR49B isoform at the early time points (6 h to 12 h) during DDT exposure. Our data support the hypothesis that the MDR49B isoform, with three amino acid mutations, plays a role in the early aspects of DDT resistance in 91-R.
机译:ATP结合盒(ABC)转运蛋白代表蛋白质的超家族,在原核生物和真核生物中均具有重要的生理作用。在昆虫中,ABC转运蛋白以前与杀虫剂抗性有关。六十年来,DDT强烈选择了果蝇的91-R菌株。最近对91-R进行的选择性扫描分析表明,ADR转运体MDR49在DDT抗药性中的潜在作用,然而,迄今为止,尚未阐明MDR49如何在抗药性中发挥作用的细节。在这项研究中,我们调查了MDR49的结构变化和其他剪接事件对91-​​R的DDT抗性的影响,与DDT易感菌株91-C相比。当将91-R与91-C进行比较时,我们观察到MDR49中的三个氨基酸差异,并且只有一种同工型(MDR49B)与DDT抗性有关。与91-C-MDR49B亚型相比,含有91-R-MDR49B亚型的转基因果蝇菌株在DDT暴露的早期时间点(6 h至12 h)具有显着更高的LD50值。我们的数据支持以下假设:具有三个氨基酸突变的MDR49B同工型在 91-R 中对DDT耐药的早期方面起作用。

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