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Regulated protein depletion by the auxin-inducible degradation system in Drosophila melanogaster

机译:果蝇诱导的生长素诱导降解系统调节蛋白质的消耗

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The analysis of consequences resulting after experimental elimination of gene function has been and will continue to be an extremely successful strategy in biological research. Mutational elimination of gene function has been widely used in the fly Drosophila melanogaster. RNA interference is used extensively as well. In the fly, exceptionally precise temporal and spatial control over elimination of gene function can be achieved in combination with sophisticated transgenic approaches and clonal analyses. However, the methods that act at the gene and transcript level cannot eliminate protein products which are already present at the time when mutant cells are generated or RNA interference is started. Targeted inducible protein degradation is therefore of considerable interest for controlled rapid elimination of gene function. To this end, a degradation system was developed in yeast exploiting TIR1, a plant F box protein, which can recruit proteins with an auxin-inducible degron to an E3 ubiquitin ligase complex, but only in the presence of the phytohormone auxin. Here we demonstrate that the auxin-inducible degradation system functions efficiently also in Drosophila melanogaster. Neither auxin nor TIR1 expression have obvious toxic effects in this organism, and in combination they result in rapid degradation of a target protein fused to the auxin-inducible degron.
机译:在实验中消除基因功能后产生的后果分析已经并将继续是生物学研究中极为成功的策略。基因功能的突变消除已在果蝇果蝇中广泛使用。 RNA干扰也被广泛使用。在运行中,结合复杂的转基因方法和克隆分析,可以实现消除基因功能的非常精确的时间和空间控制。但是,在基因和转录水平上起作用的方法不能消除产生突变细胞或开始RNA干扰时已经存在的蛋白质产物。因此,靶向可诱导的蛋白质降解对于控制基因功能的快速消除非常重要。为此,在酵母中开发了一种降解系统,利用的是植物F盒蛋白TIR1,该蛋白可以将具有生长素诱导性的地龙将蛋白募集到E3泛素连接酶复合体上,但仅在存在植物激素生长素的情况下才能进行。在这里,我们证明了生长素诱导的降解系统在果蝇中也有效地起作用。生长素和TIR1的表达均未在该生物体中产生明显的毒性作用,并且二者结合导致融合至生长素诱导型地龙的靶蛋白的快速降解。

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