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RU486 依赖性激活基因开关系统在成年肌肉中会导致果蝇产生严重的不良反应。

The RU486-dependent activation of the GeneSwitch system in adult muscles leads to severe adverse effects in Drosophila.

机构信息

Department of Biochemistry and Molecular Genetics, University of Illinois at Chicago, Chicago, IL 60607, USA.

Department of Physiology, Wayne State School of Medicine, Detroit, MI 48201, USA.

出版信息

G3 (Bethesda). 2024 May 7;14(5). doi: 10.1093/g3journal/jkae039.

Abstract

Robust genetic systems to control the expression of transgenes in a spatial and temporal manner are a valuable asset for researchers. The GeneSwitch system induced by the drug RU486 has gained widespread use in the Drosophila community. However, some concerns were raised as negative effects were seen depending on the stock, transgene, stage, and tissue under study. Here, we characterized the adverse effects triggered by activating the GeneSwitch system in adult muscles using the MHC-GS-GAL4 driver. When a control, mock UAS-RNAi transgene was induced by feeding adult flies with RU486, we found that the overall muscle structure, including myofibrils and mitochondrial shape, was significantly disrupted and led to a significant reduction in the lifespan. Remarkably, lifespan was even shorter when 2 copies of the driver were used even without the mock UAS-RNAi transgene. Thus, researchers should be cautious when interpreting the results given the adverse effects we found when inducing RU486-dependent MHC-GS-GAL4 in adult muscles. To account for the impact of these effects we recommend adjusting the dose of RU486, setting up additional control groups, such as a mock UAS-RNAi transgene, as comparing the phenotypes between RU486-treated and untreated animals could be insufficient.

摘要

稳健的遗传系统可实现转基因在时空上的表达调控,这对研究人员来说是非常宝贵的资源。RU486 诱导的 GeneSwitch 系统已在果蝇研究领域得到广泛应用。然而,人们发现该系统在不同品系、转基因、发育阶段和组织中会产生一些负面影响,因此引起了一些关注。在这里,我们利用 MHC-GS-GAL4 驱动子来研究激活 GeneSwitch 系统在成年肌肉中引发的不良反应。当通过喂养 RU486 来诱导对照、模拟 UAS-RNAi 转基因时,我们发现整体肌肉结构,包括肌原纤维和线粒体的形状,都受到显著破坏,并导致寿命显著缩短。值得注意的是,即使没有模拟 UAS-RNAi 转基因,使用 2 个拷贝的驱动子也会导致寿命更短。因此,当在成年肌肉中诱导 RU486 依赖性 MHC-GS-GAL4 时,研究人员应该谨慎解释结果,因为我们发现了不良影响。为了考虑这些影响,我们建议调整 RU486 的剂量,并设置额外的对照组,例如模拟 UAS-RNAi 转基因,因为仅比较 RU486 处理和未处理动物的表型可能是不够的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/956f/11075533/f0348264f4ec/jkae039f1.jpg

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