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Effective heritable gene knockdown in zebrafish using synthetic microRNAs

机译:使用合成的microRNA在斑马鱼中有效的遗传基因敲低

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摘要

Although zebrafish is used to model human diseases through mutational and morpholino-based knockdown approaches, there are currently no robust transgenic knockdown tools. Here we investigate the knockdown efficiency of three synthetic miRNA-expressing backbones and show that these constructs can downregulate a sensor transgene with different degrees of potency. Using this approach, we reproduce spinal muscular atrophy (SMA) in zebrafish by targeting the smn1 gene. We also generate different transgenic lines, with severity and age of onset correlated to the level of smn1 inhibition, recapitulating for the first time the different forms of SMA in zebrafish. These lines are proof-of-concept that miRNA-based approaches can be used to generate potent heritable gene knockdown in zebrafish.
机译:尽管斑马鱼被用于通过基于突变和基于吗啉代的基因敲除方法对人类疾病进行建模,但是目前还没有强大的转基因基因敲除工具。在这里,我们研究了表达三个合成miRNA的骨架的敲低效率,并显示这些构建体可以下调具有不同效力水平的传感器转基因。使用这种方法,我们通过针对smn1基因来复制斑马鱼的脊髓性肌萎缩症(SMA)。我们还产生了不同的转基因品系,其严重程度和发病年龄与smn1抑制水平相关,首次概括了斑马鱼中不同形式的SMA。这些证据证明了基于miRNA的方法可用于在斑马鱼中产生有效的可遗传基因敲低的概念。

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